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Chemistry

D-Index
59
Citations
14683
World Ranking
10042
National Ranking
195

Overview

Günther G. Scherer is affiliated with the International Society of Electrochemistry in Switzerland and has contributed to research primarily in the fields of Engineering and Energy. Their work spans several subfields, including Electrical and Electronic Engineering, Renewable Energy, Sustainability and the Environment, Electronic, Optical and Magnetic Materials, Materials Chemistry, and Automotive Engineering.

The main topics of Scherer's research include:

  • Electrocatalysts for Energy Conversion
  • Advanced battery technologies research
  • Fuel Cells and Related Materials
  • Advanced Photocatalysis Techniques
  • Supercapacitor Materials and Fabrication
  • Catalytic Processes in Materials Science
  • Advanced Memory and Neural Computing

Scherer has published research papers in a number of notable scientific venues. Frequent publication venues include:

  • Advanced Materials
  • Nature Communications
  • Journal of the American Chemical Society
  • Angewandte Chemie International Edition
  • Small

Among the recent publications are:

  • Recent Development of Oxygen Evolution Electrocatalysts in Acidic Environment, 2021, Advanced Materials
  • Spin pinning effect to reconstructed oxyhydroxide layer on ferromagnetic oxides for enhanced water oxidation, 2021, Nature Communications
  • Surface Composition Dependent Ligand Effect in Tuning the Activity of Nickel-Copper Bimetallic Electrocatalysts toward Hydrogen Evolution in Alkaline, 2020, Journal of the American Chemical Society
  • Anodic Oxidation Enabled Cation Leaching for Promoting Surface Reconstruction in Water Oxidation, 2020, Angewandte Chemie International Edition
  • Advanced Electrolyte Formula for Robust Operation of Vanadium Redox Flow Batteries at Elevated Temperatures, 2024, Small

Collaborations are a significant component of Scherer's research activities. Frequent co-authors include:

  • Zhichuan J. Xu
  • Adrian C. Fisher
  • Yuanmiao Sun
  • Yubo Chen
  • Alexis Grimaud

Best Publications

  • Oxygen Reduction on Carbon-Supported Pt−Ni and Pt−Co Alloy Catalysts

    U. A. Paulus;and A. Wokaun;G. G. Scherer;T. J. Schmidt

  • Iron-facilitated dynamic active-site generation on spinel CoAl2O4 with self-termination of surface reconstruction for water oxidation

    Tianze Wu;Shengnan Sun;Jiajia Song;Shibo Xi

  • Recent Development of Oxygen Evolution Electrocatalysts in Acidic Environment.

    Li An;Chao Wei;Min Lu;Hanwen Liu

  • Cations in Octahedral Sites: A Descriptor for Oxygen Electrocatalysis on Transition-Metal Spinels

    Chao Wei;Zhenxing Feng;Günther G. Scherer;James Barber;James Barber

  • Oxygen reduction on high surface area Pt-based alloy catalysts in comparison to well defined smooth bulk alloy electrodes

    U.A. Paulus;A. Wokaun;G.G. Scherer;T.J. Schmidt

  • Nanoparticles in Energy Technology: Examples from Electrochemistry and Catalysis

    Fabio Raimondi;Günther G. Scherer;Rüdiger Kötz;Alexander Wokaun

  • Study of radiation-grafted FEP-G-polystyrene membranes as polymer electrolytes in fuel cells

    Felix N. Büchi;Bhuvanesh Gupta;Otto Haas;Günther G. Scherer

  • Spin pinning effect to reconstructed oxyhydroxide layer on ferromagnetic oxides for enhanced water oxidation.

    Tianze Wu;Xiao Ren;Yuanmiao Sun;Shengnan Sun

  • In situ diagnostic of two-phase flow phenomena in polymer electrolyte fuel cells by neutron imaging: Part A. Experimental, data treatment, and quantification

    Denis Kramer;Jianbo Zhang;Ryoichi Shimoi;Eberhard Lehmann

  • Surface Composition Dependent Ligand Effect in Tuning the Activity of Nickel-Copper Bimetallic Electrocatalysts toward Hydrogen Evolution in Alkaline.

    Chao Wei;Yuanmiao Sun;Günther G. Scherer;Adrian C. Fisher

  • Investigation of the Transversal Water Profile in Nafion Membranes in Polymer Electrolyte Fuel Cells

    Felix N. Büchi;Günther G. Scherer

  • Radiation Grafted Membranes for Polymer Electrolyte Fuel Cells

    L. Gubler;S. A. Gürsel;G. G. Scherer

  • In situ observation of the water distribution across a PEFC using high resolution neutron radiography

    P. Boillat;D. Kramer;B.C. Seyfang;G. Frei

  • Anisotropic, effective diffusivity of porous gas diffusion layer materials for PEFC

    Reto Flückiger;Stefan A. Freunberger;Denis Kramer;Alexander Wokaun

  • 3D Imaging of Catalyst Support Corrosion in Polymer Electrolyte Fuel Cells

    Hendrik Schulenburg;Bernhard Schwanitz;Nicolas Linse;Guenther G. Scherer

  • In situ diagnostic of two-phase flow phenomena in polymer electrolyte fuel cells by neutron imaging Part B. Material variations

    Jianbo Zhang;Denis Kramer;Ryoichi Shimoi;Yoshitaka Ono

  • Anodic Oxidation Enabled Cation Leaching for Promoting Surface Reconstruction in Water Oxidation

    Yan Duan;Jun Yan Lee;Shibo Xi;Yuanmiao Sun

  • Characterization of perfluorosulfonic acid membranes by conductivity measurements and small-angle X-ray scattering

    J. Halim;F. N. Büchi;O. Haas;Manfred Stamm

  • Cation exchange membranes by pre-irradiation grafting of styrene into FEP films. I: Influence of synthesis conditions

    Bhuvanesh Gupta;Felix N. Büchi;Günther G. Scherer

  • Polymer Membranes for Fuel Cells

    Günther G. Scherer

  • Grafting of pre-irradiated poly(ethylene-alt-tetrafluoroethylene) films with styrene: influence of base polymer film properties and processing parameters

    Hans-Peter Brack;Heiner G. Bührer;Lukas Bonorand;Günther G. Scherer

Frequent Co-Authors

Alexander Wokaun
Alexander Wokaun Paul Scherrer Institute
Bhuvanesh Gupta
Bhuvanesh Gupta Indian Institute of Technology Delhi
Felix N. Büchi
Felix N. Büchi Paul Scherrer Institute
Harun H. Solak
Harun H. Solak Paul Scherrer Institute
Kell Mortensen
Kell Mortensen University of Copenhagen
Otto Haas
Otto Haas Paul Scherrer Institute
Thomas J. Schmidt
Thomas J. Schmidt Paul Scherrer Institute
Rüdiger Kötz
Rüdiger Kötz Paul Scherrer Institute
Stefan A. Freunberger
Stefan A. Freunberger Institute of Science and Technology Austria
Dirk Henkensmeier
Dirk Henkensmeier Korea Institute of Science and Technology

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