PUBLICATIONS 

2023 

1. Małecki Marcin, Dopieralski Przemysław, Gulia Nurbey, Pigulski Bartłomiej, Lis Tadeusz, Szafert Sławomir

Better big or strained? Deformations of shape persistent arylene butadiynylene macrocycles

New Journal of Chemistry, 2023, 47, 6086-6094

2. Gohari Gholamreza, Panahirad Sima, Mohammadi Asghar, Kulak Muhittin, Dadpour Mohamad Reza, Lighvan Zohre Mehri, Sharifi Sina, Eftekhari-Sis Bagher, Szafert Sławomir, Fotopoulos Vasileios, Akbari Ali

Characterization of Octa-aminopropyl polyhedral oligomeric silsesquioxanes (OA-POSS) nanoparticles and their effect on sweet basil (Ocimum basilicum L.) response to salinity stress

Plant Physiology and Biochemistry, 2023, 196, 89-102

3. Praveen Chandrasekar, Szafert Sławomir

Homogeneous Gold Catalysis for Regioselective Carbocyclization of Alkynyl Precursors

ChemPlusChem, 2023, 88, e202300202/1-e202300202/24

4. Kruszewska-Bąk Dominika, Deska Radosław, Matczyszyn Katarzyna, Szafert Sławomir, Pigulski Bartłomiej

Hybrids of Polyynes and Azo Dyes: Synthesis, Characterization, and Two-Photon Absorption

Journal of Physical Chemistry C, 2023, 127, 11720-11729

5. Ramezanpour Azar, Ansari Legha, Rahimkhoei Vahid, Sharifi Sina, Bigham Ashkan, Lighvan Zohre Mehri, Rezaie Jafar, Szafert Sławomir, Mahdavinia GholamReza, Akbari Ali, Jabbari Esmaiel

Recent advances in carbohydrate-based paclitaxel delivery systems

Polymer Bulletin, 2023, 80, 1-27

 

2022

1. Skrzypacz Piotr, Kabduali Bek, Kadyrbek Alua, Szafert Sławomir, Andreev Vsevolod, Golman Boris

Analysis of dead-core formation in catalytic reaction and diffusion processes with generalized diffusion flux

Scientific Reports, 2022, 12, 22439/1-22439/11

2. Nedeljkovic Ivana, Doulabi Behrouz Zandieh, Abdelaziz Marwa, Feilzer Albert J., Exterkate Rob A. M., Szafert Sławomir, Gulia Nurbey, Krejci Ivo, Kleverlaan Cornelis J.

Cytotoxicity and anti-biofilm properties of novel hybrid-glass-based caries infiltrant

Dental Materials, 2022, 38, 2052-2061

3. Nedeljkovic Ivana, Abdelaziz Marwa, Feilzer Albert J., Szafert Sławomir, Gulia Nurbey, Dawaa Monostoi, Krejci Ivo, Kleverlaan Cornelis J.

Novel hybrid-glass-based material for infiltration of early caries lesions

Dental Materials, 2022, 38, 1015-1023

4. Małecki Marcin, Pawelczyk Dorota, Pigulski Bartłomiej, Szafert Sławomir, Gulia Nurbey

Synthesis of Shape-Persistent meta-Arylene-Butadiynylene Macrocycles with a Different Ring Size

Synthesis, 2022, 54, 5281-5290

5. Gulia Nurbey, Fornalski Jarosław, Gumienna Adrianna, Ambroziak Małgorzata, Szafert Sławomir

Temperature‐Controlled Selective Mono‐ vs. Di‐ortho‐Arylation for the Synthesis of Arylhydrazine Derivatives

Chemistry-A European Journal, 2022, 28, e202202449/1-e202202449/7

 

2021

1. Janeta Mateusz, Heidlas Julius X., Daugulis Olafs, Brookhart Maurice

2,4,6‐Triphenylpyridinium: a bulky, highly electron‐withdrawing substituent that enhances properties of nickel(II) ethylene polymerization catalysts.

Angewandte Chemie - International Edition, 2021, 60, 4566-4569

2. Gulia Nurbey, Małecki Marcin, Szafert Sławomir

Direct preparation of N-substituted pyrazoles from primary aliphatic or aromatic amines.

Journal of Organic Chemistry, 2021, 86, 9353-9359

3. Feghhi Maryam, Rezaie Jafar, Akbari Ali, Jabbari Nasrollah, Jafari Hessam, Seidi Farzad, Szafert Sławomir

Effect of multi-functional polyhydroxylated polyhedral oligomeric silsesquioxane (POSS) nanoparticles on the angiogenesis and exosome biogenesis in human umbilical vein endothelial cells (HUVECs).

Materials and Design, 2021, 197, 109227/1-109227/11

4. Szczepkowska Anna M., Janeta Mateusz, Siczek Miłosz, Tylus Włodzimierz, Trzeciak Anna M., Bury Wojciech

Immobilization of Rh(I) precursor in a porphyrin metal–organic framework – turning on the catalytic activity.

Dalton Transactions, 2021, 50, 9051-9058

5. Pander Marzena, Janeta Mateusz, Bury Wojciech

Quest for an efficient 2-in-1 MOF-based catalytic system for cycloaddition of CO2 to epoxides under mild conditions.

ACS Applied Materials and Interfaces, 2021, 13, 8344-8352

6. Męcik Patrycja, Pigulski Bartłomiej, Szafert Sławomir

Serendipitous formation of various selenium heterocycles hidden in the classical synthesis of selenophene.

Organic Letters, 2021, 23, 1066-1070

7. Jarszak-Tyl Agata, Pigulski Bartłomiej, Szafert Sławomir

Solvent-free C–H alkynylation of azulenes.

Organic Chemistry Frontiers, 2021, 8, 5674-5681. 

 

2020

1. Mesci Seda, Gül Melek, Eryılmaz Serpil, Lis Tadeusz, Szafert Sławomir, Yıldırım Tuba
Antioxidant and cytotoxic activity of isoindole compounds in breast cancer cells (MCF-7).
Journal of Molecular Structure, 2020, 1217, 128366/1-128366/12

2. Gulia Nurbey, Pigulski Bartłomiej, Szafert Sławomir
Base-promoted double amination of 1-haloalkynes: direct synthesis of ene-1,1-diamines.
European Journal of Organic Chemistry, 2020, 5610-5615

3. Akbari Ali, Jabbari Nassrollah, Sharifi Roholah, Ahmadi Mahdi, Vahhabi Ali, Seyedzadeh Seyyed Javad, Nawaz Muhammad, Szafert Sławomir, Mahmoodi Monireh, Jabbari Esmaiel, Asghari Rahim, Rezaie Jafar
Free and hydrogel encapsulated exosome-based therapies in regenerative medicine.
Life Sciences, 2020, 249, 117447/1-117447/12

4. Starynowicz Przemysław, Berski Sławomir, Gulia Nurbey, Osowska Karolina, Lis Tadeusz, Szafert Sławomir
Is it conjugated or not? The theoretical and experimental electron density map of bonding in p-CH3CH2COC6H4-C≡C-C≡C-p-C6H4COCH3CH2.
Molecules, 2020, 25, 4388/1-4388/11

5. Salimi Leila, Akbari Ali, Jabbari Nassrollah, Mojarad Behman, Vahhabi Ali, Szafert Sławomir, Kalashani Sadegh Asghari, Soraya Hamid, Nawaz Muhammad, Rezaie Jafar
Synergies in exosomes and autophagy pathways for cellular homeostasis and metastasis of tumor cells.
Cell and Bioscience, 2020, 10, 64/1-64/18

6. Janeta Mateusz, Lis Tadeusz, Szafert Sławomir
Zinc imine polyhedral oligomeric silsesquioxane as a quattro‐site catalyst for the synthesis of cyclic carbonates from epoxides and low‐pressure CO2
Chemistry-A European Journal, 2020, 26, 13686-13697

2019

1. Pigulski, B.; Gulia, N.; Męcik, P.; Wieczorek, R.; Arendt, A.; Szafert, S. 

Crystal Engineering of 1-Halopolyynes by End-Group Manipulation

Crystal Growth & Design, 2019, doi: 10.1021/acs.cgd.9b00987

 

2. Arendt-Pindel, A.; Marszałek-Harych, A.; Gębarowska, E.; Gębarowski, T,; Jędrzkiewicz, D.; Pląskowska, E.; Zalewski, D.; Gulia, N.; Szafert, S.; Ejfler, J.

Design and functionalization of bioactive benzoxazines. An unexpected ortho-substitution effect

New. J. Chem. 2019, 43, 12042-12053.

 

3. Pigulski, B.; Gulia, N.; Szafert, S.

Reactivity of Polyynes: Complex Molecules from Simple Carbon Rods.

European Journal of Organic Chemistry, 2019, 1420-1445. view at publisher's website

 

4. Woźniak, M.J.; Chlanda, A.; Oberbek, P.; Heljak, M.; Czarnecka, K.; Janeta, M.; John, Ł.

Binary bioactive glass composite scaffolds for bone tissue engineering : structure and mechanical properties in micro and nano scale : a preliminary study. 
Micron,   doi: 10.1016/j.micron.2018.12.006

 

5. Chlanda, A.; Oberbek, P.; Heljak, M.; Kijeńska-Gawrońska, E.; Bolek, T.; Gloc, M.; John, Ł.; Janeta M.; Woźniak M. J.

Fabrication, multi-scale characterization and in-vitro evaluation of porous hybrid bioactive glass polymer-coated scaffolds for bone tissue engineering.

Materials Science and Engineering C-Materials for Biological Applications, doi: 10.1016/j.msec.2018.09.062

 

2018

1. Pigulski, B.; Jarszak, A.; Szafert, S.

Selective Synthesis of Iridium(III) End-Capped Polyynes by Oxidative Addition of 1-Iodopolyynes to Vaska’s Complex

Dalton Transactions, 2018, 47, 17046-17054. view at publisher's website

 

2. Jędrzkiewicz, D.; Marszałek-Harych, A.; Ejfler, J.

Serendipitous Synthesis Found in the Nuances of Homoleptic Zinc Complex Formation

Inorganic Chemistry, 2018, 57 (14), 8169–8180. view at publisher's website

 

3. Lorkowski, J.; Żak, P.; Kubicki, M.; Pietraszuk, C.; Jędrzkiewicz D.; Ejfler, J.

Dimeric palladium 1,2,3-triazol-5-ylidene complexes – synthesis, structure, reactivity and catalytic properties in Suzuki coupling

New Journal of Chemistry, 2018, 42, 10134-10141. view at publisher's website

 

4. Kwak, S. H.; Gulia, N.; Daugulis, O.

Synthesis of Unsymmetrical 2,6-Diarylanilines by Palladium-Catalyzed C-H Bond Functionalization Methodology

The Journal of Organic Chemistry 2018, 83, 5844-5850. view at publisher's website

 

5. Janeta, M.; Bury, W.; Szafert, S. 

Porous Silsesquioxane–Imine Frameworks as Highly Efficient Adsorbents for Cooperative Iodine Capture

ACS Appl. Mater. Interfaces 2018, 23, 19964-19973. view at publisher's website

 

6. John, Ł.

Selected developments and medical applications of organic-inorganic hybrid biomaterials based on functionalized spherosilicates

Materials Science and Engineering C 201888, 172-181 | view at publisher's website

 

7. John, Ł.; Janeta, M.; Szafert, S.

Synthesis of cubic spherosilicates for self-assembled organic-inorganic biohybrids based on functionalized methacrylates

New Journal of Chemistry 2018, 42, 39-47 (outside back cover) | view at publisher's website

 

2017

1. Marszałek-Harych, A.; Jędrzkiewicz, D.; Ejfler, J.

Bio- and chemocatalysis cascades as a bridge between biology and chemistry for green polymer synthesis

Cellular & Molecular Biology Letters 2017, 22, art. no. 28 (Invited Paper) view at publisher's website

 

2. Pigulski, B.; Cichos, J.; Szafert, S.

Polyynes as Precursors of Photoluminescent Solvent Polarity Probes

ACS Sustainable Chemistry & Engineering 2017, 5, 7077-7085 view at publisher's website

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3. Gulia, N.; Pigulski, B.; Szafert, S.

Reactivity of 3-halopropynols: X-ray crystallographic analysis of 1,1-dihalocumulenes and 2+2 cycloaddition products

Arkivoc 2017, 191-204

 

4. Janeta, M.; Szafert, S.

Synthesis, Characterization and Thermal Properties of T8 type amido-POSS with p-halophenyl end-group

Journal of Organometallic Chemistry 2017, doi: 10.1016/j.jorganchem.2017.05.044 

 

5. John, Ł.; Janeta, M.; Szafert, S.

Designing of Macroporous Magnetic Bioscaffold Based on Functionalized Methacrylate Network Covered by Hydroxyapatites and Doped with Nano-MgFe2O4 for Potential Cancer Hyperthermia Therapy

Materials Science and Engineering C 2017, 78, 901-911

 

6. Jędrzkiewicz, D.; Kantorska, D.; Wjtaszak, J.; Ejfler, J.; Szafert, S.

DFT Calculation as Ligand Toolbox for the Synthesis of Active Initiators for ROP of Cyclic Esters

Dalton Transactions 2017, 46, 4929-4942

 

7. Gulia, N.; Daugulis, O.

Palladium-Catalyzed Pyrazole-Directed sp3 C-H Bond Arylation for the Synthesis of β-Phenethylamines

Angewandte Chemie International Edition 2017, 56, 3630-3634

 

8. John, Ł.; Malik, M.; Janeta, M.; Szafert, S.

First Step Towards a Model System of the Drug Delivery Network Based on Amide-POSS Nanocarriers

RSC Advances 2017, 7, 8394-8401

 

9. Jędrzkiewicz, D.; Adamus, G.; Kwiecień, M.; John, Ł.; Ejfler, J. 

Lactide as the Playmaker of the ROP Game: A Theoretical and Experimental Investigation of Ring-Opening Polymerization of Lactide Initiated by Aminonaphtholate Zinc Complexes

Inorganic Chemistry 201756, 1349-1365

 

10. Pigulski, B.; Męcik, P.; Cichos, J.; Szafert, S.

Use of Stable Amine-Capped Polyynes in the Regioselctive Synthesis of Push-Pull Thiophenes

The Journal of Organic Chemistry 2017, 82, 1487-1498.view at publisher's website

 

11. Gul, M.; Elemes, Y.; Pelit, E.; Dernektsi, E.; Georgiou, D.; Oikonomou, K.; Lis, T.; Szafert, S.

Synthesis of PhTAD-Substituted Dihydropyrrole Derivatives via Stereospecific C-H Amination

Research on Chemical Intermediates 2017, 43, 1031-1045.

 

2016

1. Pigulski, B.; Arendt, A.; Tomilin, D. N.; Sobenina, L. N.; Trofimov, B. A.; Szafert, S.

Transition-Metal Free Mechanochemical Approach to Polyyne Substituted Pyrroles

The Journal of Organic Chemistry 2016, 81, 9188-9198 | view at publisher's website

Highlighted in Synfacts as Synfact of the Month: Synfacts 2016, 12, 1245.

J. Org. Chem., 2016, 81 (19), pp 9188–9198
 

2. John, Ł.; Janeta, M.; Rajczakowska, M.; Ejfler, J.; Łydżba, D.; Szafert, S.

Synthesis and Microstructural Properties of the Scaffold Based on a 3-(Trimethoxysilyl)propyl Methacrylate-POSS Hybrid Towards Potential Tissue Engineering Applications.

RSC Advances 2016, 6, 66037-66047| view at publisher's website

 

3. Janeta, M.; John, Ł.; Ejfler, J.; Lis, T.; Szafert, S. 

Multifunctional Imine-POSS as Uncommon 3D Nanobuilding Blocks for Supramolecular Hybrid Materials: Synthesis, Structural Characterization and Properties.

Dalton Transactions 201645, 12312-12321 (inside front cover). | view at publisher's website

 

4. John, Ł.; Podgórska, M.; Nedelec, J.-M.; Cwynar-Zając, Ł.; Dzięgiel, P. 

Strontium-Doped Organic-Inorganic Hybrids Towards Three-Dimensional Scaffolds for Osteogenic Cells.

Materials Science and Engineering C 2016, 68, 117-127

 

5. Sobota, P.; Utko, J.; Lis, T.; John, Ł.; Petrus, R.; Drąg-Jarząbek, A. 

Unexpected Reactions Between Ziegler-Natta Catalyst Components and Structural Characterization of Resulting Intermediates.

Inorganic Chemistry 201655, 4636-4642

 

6. Drąg-Jarząbek, A.; John, Ł.; Petrus, R.; Kosińska-Klähn, M.; Sobota, P. 

Alkaline-Earth Zirconate Perovskites MZrO3 (M = Ba2+, Sr2+, Ca2+) Derived from Molecular Precursors and Doped with Eu3+ Ions.

Chemistry - A European Journal 201622, 4780-4788 (inside back cover).

 

7. Jędrzkiewicz, D.Ejfler, J.John, Ł.Szafert, S. 

Zebra Reaction or the Recipe for Heterodimeric Zinc Complexes Synthesis.

Dalton Transactions 2016, 45, 2829-2838 (front cover page)

 

8. Szafert, S.; Janeta, M.; John, Ł. 

Method of Converting Polyhedral Oligomeric Silsesquioxane (POSS) Type T8 Into Type T10.

US Patent, US 9,365,595 B1, 2016

 

2015

1. Tomilin, D. N.; Pigulski, B.; Gulia, N.; Arendt, A.; Sobenina, L. N.; Mikhaleva, A. I.; Szafert, S.; Trofimov, B. A.

Direct Synthesis of Butadiynyl-Substituted Pyrroles under Solvent- and Transition Metal-Free Conditions

RSC Advances 2015, 5, 73241-73248 | view at publisher's website

 RSC Adv., 2015,5, 73241-73248

2. Janeta, M.; John, Ł.; Ejfler, J.; Szafert, S.

Novel Organic-Inorganic Hybrids Based on T8 and T10 Silsesquioxanes: Synthesis, Cage-Rearrangement and Properties.

RSC Advances 2015, 5, 72340-72351 | view at publisher's website

 

3. Pigulski, B.; Gulia, N.; Szafert, S.

Synthesis of Long Palladium End-Capped Polyynes through the Use of Asymmetric 1-Iodopolyynes

Chemistry - A European Journal 2015, 21, 17769-17778 | view at publisher's website

10.1002/chem.201502737 

4. Jędrzkiewicz, D.; Ejfler, J.; Gulia, N.; John, Ł.; Szafert, S. 

Designing of Ancillary Ligand for Heteroleptic/Homoleptic Zinc Complexes Formation: Synthesis, Structures and Application in ROP of Lactides.

Dalton Transactions 2015, 44, 13700-13715

 

5. Arendt, A.; Kołkowski, R.; Samoc, M.; Szafert, S.

Spectral Dependence of Nonlinear Optical Properties of Symmetrical Octatetraynes with p-Substituted Phenyl End-Groups.

Physical Chemistry Chemical Physics 2015, 17, 13680-13688 | view at publisher's website

 

6. Bewick, N. A.; Arendt, A.; Li, Y.; Szafert, S.; Lis, T.; Wheeler, K. A.; Young, J.; Dembinski, R.

Synthesis and Solid-State Structure of (4-Hydroxy-3,5-Diiodophenyl) Phosphine Oxides. Dimeric Motifs with the Assistance of O-H···O=P Hydrogen Bonds.

Current Organic Chemistry 2015, 19, 469-474 | view at publisher's website

 

7. Gulia, N.; Pigulski, B.; Szafert, S.

Palladium End-Capped Polyynes via Oxidative Addition of 1-Haloalkynes to Pd(PPh3)4

Organometallics 2015, 34, 673-682 (front cover page) | view at publisher's website

 Organometallics, 2015, 34 (4), pp 673–682

8. Jędrzkiewicz, D.; Czeluśniak, I.; Wierzejewska, M.; Szafert, S.; Ejfler, J. 

Well-Controlled, Zinc-Catalyzed Synthesis of Low Molecular Weight Oligolactides by Ring Opening Reaction.

Journal of Molecular Catalysis A: Chemical 2015, 396, 155-163 | view at publisher's website

 

9. Szafert, S.; Janeta, M.; John, Ł. 

Sposób przekształcenia Poliedrycznych Oligomerycznych Silseskwioksanów (POSS) typu T8 w związki typu T10.

Zgłoszenie patentowe 2015, PL 413463 A1

 

2014

1. Janeta, M.; John, Ł.; Ejfler, J.; Szafert, S.

High-Yield Synthesis of Amido-Functionalized Polyoctahedral Oligomeric Silsesquioxanes by Using Acyl Chlorides.

Chemistry - A European Journal 2014, 20, 15966-15974 | view at publisher's website

 

2. Stollenz, M.; Nawara-Hultzsch, A. J.; Barbasiewicz, M.; Szafert, S.; Lis, T.; Hampel, F.; Bhuvanesh, N.; Gladysz, J. A.

Gyroscope Like Molecules Consisting of PdX2/PtX2 Rotators Within Three-Spoke Dibridgehead Diphosphine Stators: Syntheses, Substitution Reactions, Structures, and Dynamic Properties.

Chemistry - A European Journal 2014, 20, 4617-4637 | view at publisher's website

 

3. Gulia, N.Pigulski, B.Charewicz, M.Szafert, S.
New, Versatile, and Highly-Efficient Method for 1-Chlorination of Terminal and Trialkylsilyl-Protected Alkynes

Chemistry - A European Journal 2014, 20, 2746-2749 | view at publisher's website

 

4. Kosińska-Klähn, M.; John, Ł.; Drąg-Jarząbek, A.; Utko, J.; Petrus, R.; Jerzykiewicz, L . B.; Sobota, P. 

Transformation of Barium-Titanium Chloro-Alkoxide Compound to BaTiO3 Nanoparticles by BaCl2 Elimination.

Inorganic Chemistry 2014, 53, 1630-1636 | view at publisher's website

 

5. John, Ł.; Sobota, P.

Synthesis of Heterometallic Compounds with Uncommon Combinations of Elements for Oxide Nanomaterials Using Organometallics.

Accounts of Chemical Research 2014, 47, 470-481 | view at publisher's website

 

6. Wojtaszak, J.; Mierzwicki, K.; Szafert, S.Gulia, N.Ejfler, J.

Homoleptic Aminophenolates of Zn, Mg and Ca. Synthesis, Structure, DFT Studies and Polymerization Activity in ROP of Lactides.

Dalton Transactions 2014, 43, 2424-2436 | view at publisher's website

 

7. Sobota, P.; John, Ł.

Organometallic Compounds in the Synthesis of New Materials. Old Ligands, New Tricks.

Chapter in: Advances in Organometallic Chemistry and Catalysis / ed. by Armando J. L. Pombeiro, Wiley-VCH, 2014, ISBN: 978-111-851-014-8 | view at publisher's website

 

2013

1. Pigulski, B.; Gulia, N.; Szafert, S.

New ε-Caprolactone Diyne Monomers Aiming for Biodegradable Polymers.

Tetrahedron Letters 2013, 54, 6032-6034

 

2. Bałtrukiewicz, M.; John, Ł.; Sobota, P.

Sol-Gel Derived Biocomposite Scaffolds for Bone Tissue Regeneration.

Engineering of Biomaterials 2013, 16, 46-48

 

Years 1991- 2012 

1. Gulia N., Ejfler J., Szafert S.
Macromolecular polyyne-containing benzoxazines for cross-linked polymerization.
Tetrahedron Lett., 2012, 53, 5471-5474.

2. Gulia N., Osowska K., Pigulski B., Lis T., Galewski Z., Szafert S.
Mori-Hiyama versus Hay coupling for higher polyynes.
Eur. J. Org. Chem., 2012, 4819-4830.

3. John Ł.
Bioszkła i organiczno-nieorganiczne kompozyty dla inżynierii tkankowej kości.
Wiadomości Chem., 2012, 66, 21-39.

4. John Ł., Bałtrukiewicz M., Sobota P., Brykner R., Cwynar-Zając Ł., Dzięgiel P.
Non-cytotoxic organic-inorganic hybrid bioscaffolds : an efficient bedding for rapid growth of bone-like apatite and cell proliferation.
Mat. Sci. Eng. C-Mater., 2012, 32, 1849-1858.

5. John Ł., Kosińska-Klähn M., Jerzykiewicz L. B., Kępiński L., Sobota P.
Synthesis of functionalized materials using aryloxo-organometallic compounds toward spinel-like MM'2O4 (M=Ba2+, Sr2+ ; M'=In3+, Al3+) double oxides.
Inorg. Chem., 2012, 51, 9820-9832.

6. Grala A., Ejfler J., Jerzykiewicz L. B., Sobota P.
Chemoselective alcoholysis of lactide mediated by a magnesium catalyst: an efficient route to alkyl lactyllactate.
Dalton Trans., 2011, 40, 4042-4044.

7. Deperasinska I., Szemik-Hojniak A., Osowska K., Rode M. F., Szczepanik A., Wiśniewski Ł., Lis T., Szafert S.
Synthesis, photophysics and excited state structure of 1,8-di(p-tolyl)-1,3,5,7-octatetrayne.
J. Photochem. Photobiol., A: Chem., 2011, 217, 299-307.

8. Wójcik A. B., John Ł., Szafert S.
High performance low refractive index materials for photonics. I. Preliminary characterization.
in: Photonics, devices, and systems V / ed. by Pavel Tománek, Dagmar Senderáková, Petr Páta. - Bellingham : SPIE, 2011, 830613, 1-6.

9. Drąg-Jarząbek A., Kosińska M., John Ł., Jerzykiewicz L. B., Sobota P.
Synthesis and structural characterization of a new molecular precursor for BaHfO3: a simple approach tu Eu-based phosphors.
Chem. Mater., 2011, 23, 4212-4219.

10. John Ł., Sobota P.
Związki alkoholanowe w syntezie nanomateriałów.
Wiadomości Chem., 2011, 65, 839-868.

11. Ejfler J., Krauzy-Dziedzic K., Szafert S., Jerzykiewicz L., Sobota P.
Synthesis, characterization, and catalytic studies of (aryloxido)magnesium complexes.
Eur. J. Inorg. Chem., 2010, 3602-3609.

12. Ejfler J., Szafert S., Sobota P.
Well-defined aminophenolate zinc and magnesium complexes as excellent inhitiators for the ROP of lactides.
Macromol. Symp., 2010, 296, 77-79.

13. Sobenina L. N., Tomilin D. N., Petrova O. V., Gulia N., Osowska K., Szafert S., Mikhaleva A. I., Trofimov B. A.
Cross-coupling of 4,5,6,7-tetrahydroindole with functionalized haloacetylenes on active surfaces of metal oxides and salts.
Russ. J. Org. Chem., 2010, 46, 1373-1377.

14. Jallot E., Lao J., John Ł., Soulié J., Moretto P., Nedelec J. M.
Imaging physicochemical reactions occurring at the pore surface in binary bioactive glass foams by micro ion beam analysis.
ACS Appl. Mater. & Interfaces, 2010, 2, 1737-1742.

15. John Ł., Sobota P.
Alkoxide molecular precursors for nanomaterials: a one step strategy for oxide ceramics.
in: Ceramic materials / ed. by Wilfried Wunderlich. - Rijeka : Sciyo, 2010, 69-86.

16. Ejfler J., Krauzy-Dziedzic K., Szafert S., Lis T., Sobota P.
Novel chiral and achiral benzoxazine monomers and their thermal polymerization.
Macromolecules, 2009, 42, 4008-4015.

17. Krauzy-Dziedzic K., Ejfler J.
Kompleksy tytanu i cyrkonu z ligandami N-, O-donorowymi w polimeryzacji i syntezie enancjoselektywnej.
Wiadomości Chem., 2009, 63, 163-192.

18. Ejfler J., Rybak W. K.
Marek Wasielewski, Wiktor Dawydow, Bezpieczeństwo w pracowni chemicznej, Wydawnictwa Naukowo-Techniczne, Warszawa 2008.
Wiadomości Chem., 2009, 63, 342-343.

19. Sniady A., Sevilla M. D., Meneni S., Lis T., Szafert S., Khanduri D., Finke J. M., Dembiński R.
Synthesis and EPR studies of 2'-deoxyuridines with alkynyl, rodlike linkages.
Chem. Eur. J., 2009, 15, 7569-7577.

20. Sobota P., Drąg-Jarząbek A., John Ł., Utko J., Jerzykiewicz L. B., Duczmal M.
Cyclopentadienyl/alkoxo ligand exchange in group 4 metallocenes: a convenient route to heterometallic species.
Inorg. Chem., 2009, 48, 6584-6593.

21. Ejfler J.
Związki magnezu z ligandami aryloksanowymi-inicjatory polimeryzacji laktydów.
Wiadomości Chem., 2008, 62, 875-899.

22. Krauzy-Dziedzic K., Ejfler J., Szafert S., Sobota P.
Titanium and zirconium benzofuranoxides : crystal structures and catalytic properties.
Dalton Trans., 2008, 2620-2626.

23. Ejfler J., Szafert S., Mierzwicki K., Jerzykiewicz L. B., Sobota P.
Homo- and heteroleptic zinc aminophenolates as initiators for lactide polymerization.
Dalton Trans., 2008, 6556-6562.

24. John Ł., Utko J., Szafert S., Jerzykiewicz L. B., Kępiński L., Sobota P.
Synthesis and characterization of mixed-metal aryloxo-organometallic precursors for oxide-ceramic materials.
Chem. Mater., 2008, 20, 4231-4239.

25. Osowska K., Lis T., Szafert S.
Protection/deprotection-free syntheses and structural analysis of (keto-aryl)diynes.
Eur. J. Org. Chem., 2008, 4598-4606.

26. Sniady A., Durham A., Morreale M. S., Marcinek A., Szafert S., Lis T., Brzezińska K. R., Iwasaki T., Ohshima T., Mashima K., Dembiński R.
Zinc-catalyzed cycloisomerizations. Synthesis of substituted furans and furopyrimidine nucleosides.
J. Org. Chem., 2008, 73, 5881-5889.

27. Osowska K., Szafert S.
Związki i kompleksy poliynowe : strategia syntezy i zastosowania.
Wiadomości Chem., 2008, 62, 479-511.

28. Szafert S., Paul F., Meyer W. E., Gladysz J. A., Lapinte C.
Synthesis and reactivity of new heterodinuclear iron/rhenium Cx complexes of the formula (η5-C5Me5)Re(NO)(PPh3)(C≡C)n2-dppe)Fe(η5-C5Me5)(n=3,4) : redox properties and a dicobalt hexacarbonyl adduct.
C. R. Chimie, 2008, 11, 693-701.

29. Szafert S., John Ł., Sobota P.
Well-defined polynuclear heterobimetallic complexes as precursors for ceramic and magnetic materials.
Dalton Trans., 2008, 6509-6520.

30. Sobota P., Utko J., John Ł., Jerzykiewicz L. B., Drąg-Jarząbek A.
Unexpected cyclopentadienyl/alkoxo ligand exchange in titano- and zirconocene. New opportunities.
Inorg. Chem., 2008, 47, 7939-7941.

31. Jerzykiewicz L. B., Utko J., John Ł., Duczmal M., Sobota P.
Titanium-manganese compound with a chiral Mn3Ti center.
Inorg. Chem., 2007, 46, 9024-9026.

32. Ejfler J., Kobyłka M., Jerzykiewicz L. B., Sobota P.
Titanium complexes supported by bis(aryloxo) ligand: structure and lactide polymerization activities.
J. Mol. Catal. A: Chem., 2006, 257, 105-111.

33. Utko J., Ejfler J., Szafert S., John Ł., Jerzykiewicz L. B., Sobota P.
Deoligomerization by cocomplexation: syntheses and structures of aluminium-calcium alkoxides and aryloxides.
Inorg. Chem., 2006, 45, 5302-5306.

34. Szafert S., Gladysz J. A.
Update 1 of: carbon in one dimension: structural analysis of the higher conjugated polyynes.
Chem. Rev., 2006, 106, PR, 1-33.

35. Osowska K., Mierzwicki K., Szafert S.
Trapping the dirhenium alkynyl Fischer type carbene through Michael addition. Unexpected room-temperature E/Z isomerization of (CO)5Re(CO)4Re(=C(OMe)CH=C(NMe2)TMS.
Organometallics, 2006, 25, 3544-3547.

36. Ejfler J., Kobyłka M., Jerzykiewicz L. B., Sobota P.
Highly efficient magnesium initiators for lactide polymerization.
Dalton Trans., 2005, 2047-2050.

37. Utko J., Szafert S., Jerzykiewicz L. B., Sobota P.
Synthesis of homoleptic barium alkoxides and aryloxides and their reactions with Al.(CH3)3: a convenient route to heterometallic species.
Inorg. Chem., 2005, 44, 5194-5196.

38. Sobota P., Szafert S., Utko J.
Metal-assembled compounds : precursors of polymerization catalysts and new materials.
in: Education in advanced chemistry. Vol. 9 : Perspectives of coordination chemistry / ed. by Anna M. Trzeciak. - Poznań ; Wrocław : Wydaw. Uniw. Wrocławskiego, 2005, 175-194.

39. Esho N., Desaulniers J.-P., Davies B., Chui H. M.-P., Rao M. S., Chow C. S., Szafert S., Dembiński R.
NMR conformational analysis of p-tolyl furanopyrimidine 2'-deoxyribonucleoside and crystal structure of its 3', 5'-di-Oacetyl derivative.
Bioorg. Med. Chem., 2005, 13, 1231-1238.

40. John Ł., Utko J., Jerzykiewicz L. B., Sobota P.
Structural characterization of a methylaluminoxane (MAO)–magnesium dichloride cluster: model of MAO grafted onto a MgCl2 support.
Inorg. Chem., 2005, 44, 9131-9133.

41. Ejfler J., Kobyłka M., Hojniak M., Sobota P.
The influence of cocatalysts on phenylacetylene oligo-and polymerization.
J. Mol. Catal. A: Chem., 2004, 224, 93-96.

42. Utko J., Przybylak Sz., Jerzykiewicz L. B., Szafert S., Sobota P.
A family of group 4 metal alkoxo complexes with an M33-O) core relevant to Ziegler-Natta catalyst intermediates.
Chem. Eur. J., 2003, 9, 181-190.

43. Szafert S., Gladysz J. A.
Carbon in one dimension: structural analysis of the higher conjugated polyynes.
Chem. Rev., 2003, 103, 4175-4205.

44. Bauer E. B., Szafert S., Hampel F. A., Gladysz J. A.
Tungsten-catalyzed alkyne metatheses in transition-metal coordination spheres: versatile new syntheses of metallamacrocycles.
Organometallics, 2003, 22, 2184-2186.

45. Ejfler J., Szafert S., Jiao H., Sobota P.
Syntheses of new hexacoordinate germanium(IV) complexes. Crystal structures and properties of [GeCl4(TMEDA)] and [GeCl2(N3)2(TMEDA)].
New J. Chem., 2002, 26, 803-805.

46. Sobota P., Przybylak Sz., Ejfler J., Kobyłka M., Jerzykiewicz L. B.
Synthesis and structural characterization of magnesium and titanium siloxanes.
Inorg. Chim. Acta, 2002, 334, 159-164.

47. Szafert S., Utko J., Ejfler J., Jerzykiewicz L. B., Sobota P.
Elementary steps of Ziegler-Natta catalyst intermediates formation. Incorporation of magnesium alkoxides with [Ti(dipp)4], Ph3SiOH, [Al.(CH3)3], and MCl(3)4 (M=V, Zr).
In: Organometallic catalysts and olefin polymerization / R. Blom (eds.) [et al..]. Berlin : Springer, cop. 2001., 2001, 240-250.

48. Sobota P., Szafert S.
Incorporation of Ziegler-Natta catalyst components. Structures and reactivity of the intermediates.
J. Chem. Soc., Dalton Trans., 2001, 1379-1386.

49. Alvey L. J., Delacroix O., Wallner C., Meyer O., Hampel F. A., Szafert S., Lis T., Gladysz J. A.
A new family of chiral chelating diamines with transition-metal stereocenters: synthesis, structure, and reactivity of the enatiomerically pure dirhenium-substituted 1,2-diamine (η5-C5H5)Re(NO)-(PPh3)(CH2N(CH3)CH2CH2(H3C)NCH2)(Ph3P)(ON)Re(η5-C5H5).
Organometallics, 2001, 20, 3087-3096.

50. Ruwwe J., Martín-Alvarez J. M., Horn C. R., Bauer E. B., Szafert S., Lis T., Hampel F. A., Cagle P. C., Gladysz J. A.
Olefin metatheses in metal coordination spheres: versatile new strategies for the construction of novel monohapto or polyhapto cyclic, macrocyclic, polymacrocyclic, and bridging ligands.
Chem. Eur. J., 2001, 7, 3931-3950.

51. Sobota P., Utko J., Sztajnowska K., Ejfler J., Jerzykiewicz L. B.
Polynuclear magnesium and magnesium-titanium species. Syntheses and crystal structures of [Mg43η2-ddbfo)2(μ,η2-ddbfo)2(μ,η1-ddbfo)21-ddbfo)2],[Mg43-OMe)2(μ,η2-ddbfo)2(μ,η1-ddbfo)21-ddbfo)2(CH3OH)5], and [Mg432-thffo)2(μ,η2-thffo)2(μ,η1-thffo)2{μ-OTi(DIPP)3}2] aggregates.
Inorg. Chem., 2000, 39, 235-239.

52. Sobota P., Utko J., Ejfler J., Jerzykiewicz L. B.
Syntheses and molecular structures of [Mg4(THFFO)6(OSiPh3)2] and [Al3Mg(μ3-O)(THFFO)3(Me)6] relevant to Ziegler-Natta catalyst intermediates (THFFO = 2-tetrahydrofurfuroxide).
Organometallics, 2000, 19, 4929-4931.

53. Szczegot K., Sibelska-Wiercigroch I., Ejfler J., Flisak Z.
Titanium-magnesium catalysts containing tetrahydrofuran and ethyl acetate for ethylene polymerization.
Polimery (Warsaw), 2000, 45, 344-348.

54. Szafert S., Haquette P., Falloon S. B., Gladysz J. A.
Synthesis and properties of chiral rhenium pentatetraenylidene complexes of the formula [(η5-C5Me5)Re(NO)(PPh3)(C=C=C=C=CAr2)]+BF4(CAr2=9-fluorenylidene).
J. Organomet. Chem., 2000, 604, 52-58.

55. Bauer E. B., Ruwwe J., Martín-Alvarez J. M., Peters T. B., Bohling J. C., Hampel F. A., Szafert S., Lis T., Gladysz J. A.
Olefin metatheses in metal coordination spheres: novel trans-spanning bidentate and facially- spanning tridentate macrocyclic phosphine complexes.
Chem. Commun., 2000, 2261-2262.

56. Dembiński R., Lis T., Szafert S., Mayne Ch. I., Bartik T., Gladysz J. A.
Appreciably bent sp carbon chains : synthesis, structure and protonation of organometallic 1,3,5-triynes and 1,3,5,7-tetraynes of the formula (η5-C5Me5)Re(NO)(PPh3)((C=C) n- p-C6H4Me).
J. Organomet. Chem., 1999, 578, 229-246.

57. Dembiński R., Szafert S., Haquette P., Lis T., Gladysz J. A.
A new route to heterobimetallic C3 complexes via C≡C metatheses of 1,3-diynyl ligands: synthesis and structure of (η5-C5Me5)Re(NO)(PPh3)(C≡CC≡)W(O-t-Bu) 3.
Organometallics, 1999, 18, 5438-5440.

58. Bartik T., Weng W., Ramsden J. A., Szafert S., Falloon S. B., Arif A. M., Gladysz J. A.
New forms of coordinated carbon: Wirelike cumulenic C3 and C5 sp carbon chain that span two different transition metals and mediate charge transfer.
J. Am. Chem. Soc., 1998, 120, 11071-11081.

59. Falloon S. B., Szafert S., Arif A. M., Gladysz J. A.
Attaching metal-capped sp carbon chains to metal clusters : Synthesis, structure and reactivity of rhenium/triosmium complexes of formula [(η5-C5Me5)Re (N))(PPh3)(CC)nOs3(CO)y(X)z]m+, including carbon geometries more distorted than planar tetracoordinate.
Chem. Eur. J., 1998, 4, 1033-1042.

60. Henderson R. A., Hughes D. L., Janas Z., Richards R. L., Sobota P., Szafert S.
Preparation and crystal structures of the mononuclear vanadium phenoxide complexes [VCl(OC6H3Pr2i-2,6)2(C4H8O)2] and [VO(OC6H3Pr2i-2,6)3]: procatalysts for ethylene polymerisation.
J. Organomet. Chem., 1998, 554, 195-201.

61. Sobota P., Utko J., Szafert S.
Synthesis and molecular structures of the magnesium and aluminum adducts of a niobium-oxo complex. X-ray crystal structures of [{NbOCl4(THF)}2Mg(THF)4] and [{NbOCl4(THF)}2AlCl(THF)3].
Inorg. Chem., 1997, 36, 2227-2229.

62. Janas Z., Sobota P., Klimowicz M., Szafert S., Szczegot K., Jerzykiewicz L. B.
2-tetrahydrofurfuroxo-vanadium-(III) and (IV) complexes. Synthesis, structures and reactivities of [V2Mg232-thffo)2(μ,η2-thffo)4Cl4]*2CH2Cl2 and [V2(μ,η2-thffo)2Cl2 O2].
J. Chem. Soc., Dalton Trans., 1997, 3897-3901.

63. Sobota P., Utko J., Szafert S., Szczegot K.
New 2-tetrahydrofurfuryloxotitanium(IV) intermediates for the synthesis of olefin polymerization catalysts.
J. Chem. Soc., Dalton Trans., 1997, 679-683.

64. Sobota P., Fritsky I. O., Ejfler J., Szafert S., Głowiak T.
The crystal structures and properties of [VCl3(THF)2(H2O)] and VCl3(THF)2(H2O)]· THF.
Polyhedron, 1996, 15, 381-384.

65. Szczegot K., Ejfler J., Sibelska-Wiercigroch I.
Ethylene polymerization on vanadium-magnesium catalysts activated with organoaluminium compounds.(Pol.).
Polimery (Warsaw), 1996, 41, 406-411.

66. Sobota P., Utko J., Janas Z., Szafert S.
New intermediates for the synthesis of alkene polymerization catalysts: the complex [Mg43η2-OCH2CH(CH2)3O}2{μ,η2-OCH2CH(CH2)3O}4Cl2]; crystal structure and properties.
Chem. Commun., 1996, 1923-1924.

67. Sobota P., Szafert S.
Ionization of TiCl4 and MgCl2 during the formation of a high-activity α-olefin polymerization catalyst. Crystal structure of [cis-{C2H4(CO2Et)2}2Cl2Ti][SbCl6]2×CH2Cl2 and [Mg{C2H4(CO2Et)2)3][MgCl4]×2CH2Cl2.
Inorg. Chem., 1996, 35, 1778-1781.

68. LeFloc’h C., Henderson R. A., Hitchcock P. B., Hughes D. L., Janas Z., Richards R. L., Sobota P., Szafert S.
Reactions of substituted hydrazines with vanadium(III) compounds: crystal structures of [NH2Me2]2[VCl3)2(μ-NNMe2)3], [V(OC6H3Pri2-2,6)3(NH2NMe2)2] and [V(OC6H3Pri2-2,6)3(NH2NMePh)2].
J. Chem. Soc., Dalton Trans., 1996, 2755-2762.

69. Sobota P., Utko J., Szafert S., Janas Z., Głowiak T.
Polynuclear aggregation of cobalt and manganese dichlorides.Synthesis, properties and structures of monomeric[CoCl2(tmen), ionic [Co33-Cl)2-(μ-Cl)3(tmen)3][BPh4], polymeric MnCl2· tmen and tetranuclear [Mn4-(μ-CL)6Cl2(tmen)4](tmen=Me2NCH2CH2NMe2).
J. Chem. Soc., Dalton Trans., 1996, 3469-3473.

70. Sobota P., Szafert S., Głowiak T.
Reactions of tin tetrachloride with diethyl glutarate. Crystal structures of [Sn2Cl8{μ -C3H6(CO2Et)2}2]· 2CH2Cl2 and cis-[SnCl4(H2O)2]· C3H6(CO2Et)2.
J. Chem. Soc., Dalton Trans., 1996, 439-442.

71. Sobota P., Szafert S., Głowiak T.
The crystal structure and properties of TiCl4{CH(CO2Et)3}] and [Al2Cl6{μ-C2H4(CO2Et)2}].
J. Organomet. Chem., 1996, 526, 329-333.

72. Sobota P., Ejfler J., Szafert S., Głowiak T., Fritsky I. O., Szczegot K.
Synthesis and characterization of new di- and tetra-meric vanadium intermediates of olefin polymerization catalysts. Crystal structure of [V2(μ-Cl)2Cl4(MeCO2Et)4] and [{VOCl2[CH2(CO2Et)2]}4]· 2CH2Cl2.
J. Chem. Soc., Dalton Trans., 1995, 1727-1732.

73. Sobota P., Utko J., Szafert S.
Ionization of YCl3 in tetrahydrofuran. Crystal structures of the [trans-YCl2(THF)5][trans-YCl4(THF)2] salt and polymeric [Ycl3· 2THF] compounds.
Inorg. Chem., 1994, 33, 5203-5206.

74. Sobota P., Utko J., Szafert S., Głowiak T.
The crystal structure and properties of trichloro- bis(tetrahydrofurfuryl propionate-O,O')yttrium(III).
Bull. Pol. Acad. Sci., Chem., 1994, 42, 191-196.

75. Sobota P., Wróblewska M., Szafert S., Głowiak T.
The synthesis of olefin polymerization precatalysts: [TiCl4(C4H7OCH2CO2CH3)] and [ (C4H7OCH2CO2Et)2Mg(μ-Cl)2TiCl4]· 2CH2Cl2. Crystal structures and properties.
J. Organomet. Chem., 1994, 481, 57-62.

76. Szafert S., Lis T., Drabent K., Sobota P.
Photochemical reduction of iron trichloride in ethyl acetate: synthesis, Mössbauer spectra and the crystal structure at 80 K of hexakis(ethyl -acetate)iron(II) bis-tetrachloroironate(III).
J. Chem. Cryst., 1994, 24, 197-202.

77. Sobota P., Ejfler J., Szafert S., Szczegot K., Sawka-Dobrowolska W.
New intermediates for the synthesis of olefin polymerization catalysts: the complexes [M2(μ-Cl)2Cl4(thf)4] (M = Ti or V, thf = tetrahydrofuran) : crystal structures and properties.
J. Chem. Soc., Dalton Trans., 1993, 2353-2357.

78. Sobota P., Szafert S., Lis T.
Reactions of TiCl4 with diesters : crystal structures of [CH2(CO2Et)2Cl4Ti] and [C2H4(CO2CH2CH2OPh)2Cl4Ti].
J. Organomet. Chem., 1993, 443, 85-91.

79. Lis T., Ejfler J., Utko J., Sobota A.
The crystal structure of cis and trans isomers of [TiCl4(thf)2].
Pol. J. Chem., 1992, 66, 93-99.

80. Sobota P., Szafert S., Utko J., Lis T.
TiIV and MoV complexes with diesters. The crystal structure of [o-C6H4(CO2CH2CH2Ph)2Cl4Ti],[C2O4(CH2CH2Ph)2Cl4Ti] and [o-C6H4(CO2Et)2Cl3MoO]·C6H6.
J. Organomet. Chem., 1992, 423, 195-210.

81. Sobota P., Ejfler J., Płuziński T., Lis T.
The formation of molecular compounds in the reaction between [MgCl2(THF)2] and [MoCl3O(THF)2]. Crystal structure of [{MoCl4O(THF)}2Mg(THF)4]·CH2Cl2.
Polyhedron, 1991, 10, 2457-2461.

82. Sobota P., Ejfler J., Utko J., Lis T.
Di-μ-chloro-tetrachlorobis(diethyl o-phthalate)dititanium(III), a new intermediate for the synthesis of titanium(III) compounds: crystal structure and properties.
J. Organomet. Chem., 1991, 410, 149-157.