Publication list


Journal Articles:

2009 - 2020

2001 - 2008

1979 - 2000

Chapters:

1. Elzbieta Luboch, Renata Bilewicz, Marzena Kowalczyk, Ewa Wagner-Wysiecka and Jan F. Biernat, „Azomacrocyclic Compounds” in Advances in Supramolecular Chemistry, W. Gokel ( Ed.) Cerberus Press Inc.2003, Vol 9, p. 73-163

2. Renata Bilewicz, Kazimierz Chmurski K. “Electrochemistry of Cyclodextrins” in “Cyclodextrins and Their Complexes, Chemistry, Analytical Methods, Applications” H. Dodziuk (Ed.),- Wiley –VCH, Weinheim, 255-332

3. Renata Bilewicz, Kazimierz Chmurski “Cyclodextrins in Molecular Devices” in “Cyclodextrins and Their Complexes, Chemistry, Analytical Methods, Applications:”, H. Dodziuk (Ed.) Wiley –VCH, Weinheim, 450-474.

4. Renata Bilewicz, Kazimierz Chmurski “Electrochemistry of Fullerenes” in “Strained Hydrocarbons” H. Dodziuk (Ed.), Wiley –VCH, Weinheim, 2009.

5. Renata Bilewicz, Marcin Opallo, “Biocathodes for dioxygen reduction in biofuel cells”in “Fuel Cell Science: Theory, Fundamentals and Bio-Catalysis” Wiley-VCH, Weinheim, 2009.


Review papers:

1. R. Bilewicz, “Molecular Design of Electrode Surfaces for Electroanalytical Chemistry”, Annali di Chimica 1997,87,53.

2. Bohdan Korybut-Daszkiewicz, Renata Bilewicz, Krzysztof WoĽniak, Nanotechnology - "Towards Molecular Machines", Akademia 2005, 23.

3. R. Bilewicz, P. Rowiński, E. Rogalska, Modified Electrodes Based on Lipidic Cubic Phases, Bioelectrochemistry, 2005,66,3

4. Bohdan Korybut-Daszkiewicz, Renata Bilewicz and Krzysztof Wozniak, „Tetraimine macrocyclic transition metal complexes as building blocks for molecular devices” Coord. Chem. Rev, 2010, 254, 1637

5. Marcin Opallo and Renata Bilewicz, "Recent Developments of Nanostructured Electrodes for Bioelectrocatalysis of Dioxygen Reduction," nces in Physical Chemistry, vol. 2011, Article ID 947637, 21 pages, 2011. doi:10.1155/2011/947637

6. S. Draminska, J.F. Biernat, R. Bilewicz, "Oznaczanie tlenu – od metody Winklera do czujników enzymatycznych", Wiadomości Chemiczne, 2015

7. K. Stolarczyk, J. Rogalski, R. Bilewicz, NAD(P)-Dependent Glucose Dehydrogenase: Applications for Biosensors, Bioelectrodes, and Biofuel Cells, Bioelectrochemistry, 23 May 2020, 107574


Patents:

1. European Patent Nr 01202802 –3-1223: Method of binding a compound to a sensor surface using hydrophobin and 02743968.6-2404-NL0200411: Immobilization of proteins and electroactive compounds on a sensor surface by means of a hydrophobin coating.

2. Patent application: Bioelectrode construction based on application of carbon nanotubes (2009)

3. European Patent Nr 01202802 – 3-1223: Method of binding a compound to a sensor surface using hydrophobin and 02743968.6-2404-NL0200411: Immobilization of proteins and electroactive compounds on a sensor surface by means of a hydrophobin coating. Patent application: Bioelectrode construction based on application of carbon nanotubes (2009).