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Engineering and Technology

D-Index
39
Citations
6907
World Ranking
7643
National Ranking
15

Overview

Grażyna Gryglewicz is affiliated with Wrocław University of Science and Technology in Poland. Their research spans the fields of Engineering and Materials Science, with a focus on Electrical and Electronic Engineering, Materials Chemistry, Electronic, Optical and Magnetic Materials, Polymers and Plastics, and Electrochemistry.

The primary research topics explored by Grażyna Gryglewicz include:

  • Supercapacitor Materials and Fabrication
  • Conducting Polymers and Applications
  • Electrochemical Sensors and Biosensors
  • Advancements in Battery Materials
  • Advanced Battery Technologies Research
  • Electrochemical Analysis and Applications
  • Adsorption and Biosorption for Pollutant Removal

Grażyna Gryglewicz has authored multiple research articles published in a variety of scientific venues. Recent notable publications include:

  • Activated Carbons and Their Evaluation in Electric Double Layer Capacitors, 2020, Molecules
  • High-performance hybrid capacitor based on a porous polypyrrole/reduced graphene oxide composite and a redox-active electrolyte, 2020, Electrochimica Acta
  • Conductive Polymer/Graphene-based Composites for Next Generation Energy Storage and Sensing Applications, 2023, ChemElectroChem
  • Effect of electrolyte and carbon material on the electrochemical performance of high-voltage aqueous symmetric supercapacitors, 2023, Journal of Materials Science
  • N-Doped Reduced Graphene Oxide/Gold Nanoparticles Composite as an Improved Sensing Platform for Simultaneous Detection of Dopamine, Ascorbic Acid, and Uric Acid, 2020, Sensors

Their work has appeared frequently in the following publication venues:

  • SSRN Electronic Journal
  • Molecules
  • ChemElectroChem
  • Journal of Materials Science
  • Chemical Engineering Science

Frequent collaborators include:

  • Daria Minta
  • Adam Moyseowicz
  • Zoraida González
  • Katarzyna Gajewska
  • Robert Carleer

Grażyna Gryglewicz's scholarly contributions focus predominantly on the development and evaluation of advanced materials related to supercapacitors, conducting polymers, and electrochemical sensor technologies, integrating novel composites and electrolyte systems within their research scope.

Best Publications

  • Adsorption characteristics of Congo Red on coal-based mesoporous activated carbon

    Ewa Lorenc-Grabowska;Grażyna Gryglewicz

  • Electrochemical capacitors based on highly porous carbons prepared by KOH activation

    K. Kierzek;E. Frackowiak;G. Lota;G. Gryglewicz

  • Effect of pore size distribution of coal-based activated carbons on double layer capacitance

    Grażyna Gryglewicz;Jacek Machnikowski;Ewa Lorenc-Grabowska;Grzegorz Lota

  • Characterization of Graphite Oxide and Reduced Graphene Oxide Obtained from Different Graphite Precursors and Oxidized by Different Methods Using Raman Spectroscopy

    Roksana Muzyka;Sabina Drewniak;Tadeusz Pustelny;Maciej Chrubasik

  • Preparation of polyol esters based on vegetable and animal fats.

    S. Gryglewicz;W. Piechocki;G. Gryglewicz

  • Enhanced reduction of graphene oxide by high-pressure hydrothermal treatment

    Noel Díez;Agata Śliwak;Stanisław Gryglewicz;Bartosz Grzyb

  • Oxidation of graphite by different modified Hummers methods

    Roksana Muzyka;Monika Kwoka;Łukasz Smędowski;Noel Díez

  • Polypyrrole/iron oxide/reduced graphene oxide ternary composite as a binderless electrode material with high cyclic stability for supercapacitors

    Adam Moyseowicz;Agata Śliwak;Ewa Miniach;Grażyna Gryglewicz

  • Kinetics and equilibrium study of phenol adsorption on nitrogen-enriched activated carbons

    E. Lorenc-Grabowska;G. Gryglewicz;M.A. Diez

  • Nitrogen-doped reduced graphene oxide as electrode material for high rate supercapacitors

    Agata Śliwak;Bartosz Grzyb;Noel Díez;Grażyna Gryglewicz

  • Chitosan-based highly activated carbons for hydrogen storage

    Iwona Wróbel-Iwaniec;Noel Díez;Grażyna Gryglewicz

  • MnO2/thermally reduced graphene oxide composites for high-voltage asymmetric supercapacitors

    Ewa Miniach;Agata Śliwak;Adam Moyseowicz;Laura Fernández-Garcia

  • Influence of pore size distribution on the adsorption of phenol on PET-based activated carbons.

    Ewa Lorenc-Grabowska;María A. Diez;Grazyna Gryglewicz

  • Adsorption of Ni(II) on spent coffee and coffee husk based activated carbon

    Mónica Hernández Rodríguez;Jan Yperman;Robert Carleer;Jens Maggen

  • Beneficial impact of oxygen on the electrochemical performance of dopamine sensors based on N-doped reduced graphene oxides

    Piotr Wiench;Zoraida González;Rosa Menéndez;Bartosz Grzyb

  • Hydrothermal-assisted synthesis of a porous polyaniline/reduced graphene oxide composite as a high-performance electrode material for supercapacitors

    Adam Moyseowicz;Grażyna Gryglewicz

  • The behaviour of sulphur forms during pyrolysis of low-rank coal

    Grażyna Gryglewicz;Stefan Jasieńko

  • Properties and performance of mesoporous activated carbons from scrap tyres, bituminous wastes and coal

    Beatriz Acevedo;Carmen Barriocanal;Iwona Lupul;Grażyna Gryglewicz

  • Nitrogen-containing chitosan-based carbon as an electrode material for high-performance supercapacitors

    Agata Śliwak;Noel Díez;Ewa Miniach;Grażyna Gryglewicz

  • pH robust electrochemical detection of 4-nitrophenol on a reduced graphene oxide modified glassy carbon electrode

    Piotr Wiench;Bartosz Grzyb;Zoraida González;Rosa Menéndez

  • Hydrothermal-assisted synthesis of an iron nitride–carbon composite as a novel electrode material for supercapacitors

    Agata Śliwak;Adam Moyseowicz;Grażyna Gryglewicz

  • Effectiveness of high temperature pyrolysis in sulfur removal from coal

    Grażyna Gryglewicz

  • KOH activation of pitch-derived carbonaceous materials—Effect of carbonization degree

    Magdalena Król;Grażyna Gryglewicz;Jacek Machnikowski

  • Interaction of the organic matrix with pyrite during pyrolysis of a high-sulfur bituminous coal

    Graz̊yna Gryglewicz;Piotr Wilk;Jan Yperman;Dirk V. Franco

  • Solvent-controlled morphology of bismuth sulfide for supercapacitor applications

    Ewa Miniach;Grażyna Gryglewicz

Frequent Co-Authors

Rosa Menéndez
Rosa Menéndez Spanish National Research Council
Marcos Granda
Marcos Granda Spanish National Research Council
Elzbieta Frackowiak
Elzbieta Frackowiak Poznań University of Technology
François Béguin
François Béguin Poznań University of Technology
Jose M. Garcia-Mina
Jose M. Garcia-Mina University of Navarra
Jacques Boulègue
Jacques Boulègue Sorbonne University
Clara Blanco
Clara Blanco Spanish National Research Council

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