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Materials Science

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Chemistry

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Overview

Vojislav R. Stamenkovic is affiliated with the University of California, Irvine in the United States. Their research primarily focuses on the fields of engineering and energy, with notable specialization in electrical and electronic engineering, renewable energy, sustainability and the environment, materials chemistry, electrochemistry, and automotive engineering.

The scientist's work covers a range of main topics, including:

  • Electrocatalysts for Energy Conversion
  • Fuel Cells and Related Materials
  • Electrochemical Analysis and Applications
  • Advanced Battery Technologies Research
  • Advancements in Battery Materials
  • Electron and X-Ray Spectroscopy Techniques

Some of the recent published papers by Vojislav R. Stamenkovic include:

  • Dynamic stability of active sites in hydr(oxy)oxides for the oxygen evolution reaction, 2020, Nature Energy
  • Past, present, and future of lead-acid batteries, 2020, Science
  • Dynamically Stable Active Sites from Surface Evolution of Perovskite Materials during the Oxygen Evolution Reaction, 2021, Journal of the American Chemical Society
  • Eliminating dissolution of platinum-based electrocatalysts at the atomic scale, 2020, Nature Materials
  • Selective electrocatalysis imparted by metal-insulator transition for durability enhancement of automotive fuel cells, 2020, Nature Catalysis

Frequent co-authors in their research include:

  • Nenad M. Marković
  • Pietro Papa Lopes
  • Dušan Strmčnik
  • Dong Young Chung
  • Dominik Haering

Stamenkovic's works are often published in venues such as:

  • ECS Meeting Abstracts
  • ACS Catalysis
  • Nature Energy
  • Journal of the American Chemical Society
  • Nature Materials

The research carried out by Vojislav R. Stamenkovic spans multiple aspects of energy conversion and storage, with particular attention to electrocatalysts and fuel cells. Their contributions also engage advanced battery technologies and the study of material stability and durability under operational conditions, reflective in the diversity of publication venues and collaborative networks.

Best Publications

  • Improved Oxygen Reduction Activity on Pt3Ni(111) via Increased Surface Site Availability

    Vojislav R. Stamenkovic;Vojislav R. Stamenkovic;Ben Fowler;Bongjin Simon Mun;Guofeng Wang

  • Trends in electrocatalysis on extended and nanoscale Pt-bimetallic alloy surfaces

    Vojislav R. Stamenkovic;Vojislav R. Stamenkovic;Bongjin Simon Mun;Bongjin Simon Mun;Matthias Arenz;Karl J. J. Mayrhofer

  • Trends in activity for the water electrolyser reactions on 3d M(Ni,Co,Fe,Mn) hydr(oxy)oxide catalysts.

    Ram Subbaraman;Dusan Tripkovic;Kee-Chul Chang;Dusan Strmcnik

  • Enhancing Hydrogen Evolution Activity in Water Splitting by Tailoring Li+-Ni(OH)2-Pt Interfaces

    Ram Subbaraman;Dusan Tripkovic;Dusan Strmcnik;Kee-Chul Chang

  • Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces

    Chen Chen;Yijin Kang;Ziyang Huo;Ziyang Huo;Zhongwei Zhu;Zhongwei Zhu

  • Changing the Activity of Electrocatalysts for Oxygen Reduction by Tuning the Surface Electronic Structure

    Vojislav R. Stamenković;Bongjinsimon Mun;Karl Johann Jakob Mayrhofer;Philip N. Ross

  • Energy and fuels from electrochemical interfaces

    Vojislav R. Stamenkovic;Dusan Strmcnik;Pietro P. Lopes;Nenad M. Markovic

  • Improving the hydrogen oxidation reaction rate by promotion of hydroxyl adsorption

    Dusan Strmcnik;Masanobu Uchimura;Chao Wang;Ram Subbaraman

  • Oxygen Reduction Reaction on Pt and Pt Bimetallic Surfaces: A Selective Review

    N. M. Marković;T. J. Schmidt;V. Stamenković;P. N. Ross

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

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

  • Measurement of oxygen reduction activities via the rotating disc electrode method : from Pt model surfaces to carbon-supported high surface area catalysts.

    K.J.J. Mayrhofer;D. Strmcnik;B.B. Blizanac;V. Stamenkovic

  • Effect of surface composition on electronic structure, stability, and electrocatalytic properties of Pt-transition metal alloys: Pt-skin versus Pt-skeleton surfaces.

    Vojislav R. Stamenkovic;Bongjin Simon Mun;Karl J. J. Mayrhofer;Philip N. Ross

  • Surface Composition Effects in Electrocatalysis: Kinetics of Oxygen Reduction on Well-Defined Pt3Ni and Pt3Co Alloy Surfaces

    V. Stamenković;T. J. Schmidt;and P. N. Ross;N. M. Marković

  • Design of active and stable Co-Mo-Sx chalcogels as pH-universal catalysts for the hydrogen evolution reaction.

    Jakub Staszak-Jirkovský;Christos D. Malliakas;Christos D. Malliakas;Pietro P. Lopes;Nemanja Danilovic

  • Enhancing the Alkaline Hydrogen Evolution Reaction Activity through the Bifunctionality of Ni(OH)2/Metal Catalysts

    N. Danilovic;Ram Subbaraman;D. Strmcnik;Kee-Chul Chang

  • Dynamic stability of active sites in hydr(oxy)oxides for the oxygen evolution reaction

    Dong Young Chung;Pietro P. Lopes;Pedro Farinazzo Bergamo Dias Martins;Haiying He

  • Design principles for hydrogen evolution reaction catalyst materials

    Dusan Strmcnik;Pietro Papa Lopes;Bostjan Genorio;Vojislav R. Stamenkovic

  • The impact of geometric and surface electronic properties of pt-catalysts on the particle size effect in electrocatalysis.

    K. J. J. Mayrhofer;B. B. Blizanac;M. Arenz;V. R. Stamenkovic

  • The role of non-covalent interactions in electrocatalytic fuel-cell reactions on platinum.

    D. Strmcnik;K. Kodama;K. Kodama;D. F. Van Der Vliet;J. Greeley

  • Activity–Stability Trends for the Oxygen Evolution Reaction on Monometallic Oxides in Acidic Environments

    Nemanja Danilovic;Ramachandran Subbaraman;Kee-Chul Chang;Seo Hyoung Chang

  • 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

Frequent Co-Authors

Nenad M. Markovic
Nenad M. Markovic Argonne National Laboratory
Philip N. Ross
Philip N. Ross Lawrence Berkeley National Laboratory
Chao Wang
Chao Wang Johns Hopkins University
Yijin Kang
Yijin Kang University of Electronic Science and Technology of China
Thomas J. Schmidt
Thomas J. Schmidt Paul Scherrer Institute
Arvydas P. Paulikas
Arvydas P. Paulikas Argonne National Laboratory
Matthias Arenz
Matthias Arenz University of Bern
Karren L. More
Karren L. More Oak Ridge National Laboratory
Karl Johann Jakob Mayrhofer
Karl Johann Jakob Mayrhofer Forschungszentrum Jülich
Guofeng Wang
Guofeng Wang University of Pittsburgh

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