World's Best Scientists 2026 revealed!
Wolfgang H. Meyer

Wolfgang H. Meyer

D-Index & Metrics

Chemistry

D-Index
49
Citations
9875
World Ranking
14725
National Ranking
1078

Overview

Wolfgang H. Meyer is affiliated with the Max Planck Society in Germany. Their research work focuses on evaluation and performance assessment, connecting closely with subfields such as management science and operations research.

The scientist has contributed to several publications, with recent works appearing in journals like Zeitschrift für Evaluation and GesundheitsRecht. Notable papers include:

  • Rezension zu: Perrin, Burt/Tyrrell, Tony (Hg.): Changing Bureaucracies: Adapting to Uncertainty and How Evaluation Can Help (2022, Zeitschrift für Evaluation)
  • Friedrich E. Schnapp verstorben (2023, GesundheitsRecht)
  • Nachruf - Eike Emrich (1957-2023) (2023, Zeitschrift für Evaluation)

Meyer has worked collaboratively with several frequent co-authors, contributing to publications alongside:

  • David S. Goodsell
  • G. M. Halpern
  • Ananda M. Chakrabarty
  • David P. Clark
  • Stefan Dübel

Their research output demonstrates an engagement with topics relevant to evaluation methodologies and processes within bureaucratic and organizational contexts. This is reflected in both the themes of their papers and the choice of publication venues. The affiliation with the Max Planck Society situates them within a research environment known for interdisciplinary and collaborative studies.

Meyer's work aligns with management science and operations research principles through an emphasis on how evaluation can assist organizations in adapting to uncertainty. The recurring focus on evaluation and performance assessment indicates a specialization within this broader scientific domain.

Best Publications

  • Polymer Electrolytes for Lithium-Ion Batteries

    Wolfgang H. Meyer

  • ANHYDROUS PROTON-CONDUCTING POLYMERS

    Martin F. H. Schuster;Wolfgang H. Meyer

  • Intermediate temperature proton conductors for PEM fuel cells based on phosphonic acid as protogenic group: A progress report

    H. Steininger;M. Schuster;K. D. Kreuer;A. Kaltbeitzel

  • Proton mobility in oligomer-bound proton solvents: imidazole immobilization via flexible spacers

    M. Schuster;Wolfgang H. Meyer;Gerhard Wegner;H. G. Herz

  • Steric Forces Measured with the Atomic Force Microscope at Various Temperatures

    Hans-Jürgen Butt;Michael Kappl;Henning Mueller;Roberto Raiteri

  • Toward a new type of anhydrous organic proton conductor based on immobilized imidazole

    M. F. H. Schuster;Wolfgang H. Meyer;M. Schuster;K. D. Kreuer

  • Molecular Composites from Rigid-Rod Poly(p-phenylene)s with Oligo(oxyethylene) Side Chains as Novel Polymer Electrolytes

    U. Lauter;Wolfgang H. Meyer;Gerhard Wegner

  • Control of ZnO Crystallization by a PEO-b-PMAA Diblock Copolymer

    Mualla Öner;Jochen Norwig;Wolfgang H. Meyer;Gerhard Wegner

  • Proton transport in polybenzimidazole blended with H3PO4 or H2SO4

    Hongting Pu;Wolfgang H. Meyer;Gerhard Wegner

  • Crystallization of CaCO3 in the presence of PEO‐block‐PMAA copolymers

    J. M. Marentette;Jochen Norwig;E. Stöckelmann;Wolfgang H. Meyer

  • New fully polymeric proton solvents with high proton mobility

    H. G. Herz;K. D. Kreuer;J. Maier;G. Scharfenberger

  • High-Resolution Solid-State NMR Studies of Poly(vinyl phosphonic acid) Proton-Conducting Polymer: Molecular Structure and Proton Dynamics

    Young Joo Lee;Bahar Bingöl;Tatiana Murakhtina;Daniel Sebastiani

  • Proton Conducting Blends of Poly(4-vinylimidazole) with Phosphoric Acid

    A. Bozkurt;Wolfgang H. Meyer

  • Synthesis, Microstructure, and Acidity of Poly(vinylphosphonic acid)

    Bahar Bingöl;Wolfgang H. Meyer;Manfred Wagner;Gerhard Wegner

  • Proton-conducting polymer electrolytes based on phosphoric acid

    A. Bozkurt;M. Ise;K. D. Kreuer;Wolfgang H. Meyer

  • Synaptic plasticity in micropatterned neuronal networks

    Angela K Vogt;Günter Wrobel;Wolfgang Meyer;Wolfgang Knoll

  • DFT prediction and experimental observation of substrate-induced catalyst decomposition in ruthenium-catalyzed olefin metathesis.

    Unknown

  • A Convenient System for Improving the Efficiency of First-Generation Ruthenium Olefin Metathesis Catalysts

    Grant S. Forman;Ann E. Mcconnell;Robert P. Tooze;Werner Janse Van Rensburg

  • In situ investigations of polymer self-assembly solution adsorption by surface plasmon spectroscopy

    Rigoberto Advincula;Emil Aust;Wolfgang Meyer;Wolfgang Knoll

  • Proton Conducting Phase-Separated Multiblock Copolymers with Sulfonated Poly(phenylene sulfone) Blocks for Electrochemical Applications: Preparation, Morphology, Hydration Behavior, and Transport

    G. Titvinidze;K. D. Kreuer;M. Schuster;C. C. de Araujo

  • PAA/imidazol-based proton conducting polymer electrolytes

    A. Bozkurt;Wolfgang H. Meyer;Gerhard Wegner

  • Efficient blue light emitting devices based on rigid‐rod polyelectrolytes

    Vera Cimrová;Wolfgang Schmidt;Rudy Rulkens;Margit Schulze

Frequent Co-Authors

Gerhard Wegner
Gerhard Wegner Max Planck Society
Hans Wolfgang Spiess
Hans Wolfgang Spiess Max Planck Society
Klaus-Dieter Kreuer
Klaus-Dieter Kreuer Max Planck Society
Wolfgang Knoll
Wolfgang Knoll Austrian Institute of Technology
Hongting Pu
Hongting Pu Tongji University
Joachim Maier
Joachim Maier Max Planck Society
Gunther Brunklaus
Gunther Brunklaus Forschungszentrum Jülich
Jürgen Rühe
Jürgen Rühe University of Freiburg
Rigoberto C. Advincula
Rigoberto C. Advincula Oak Ridge National Laboratory
Sang-Young Lee
Sang-Young Lee Yonsei University

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Studying Chemistry in the USA opens doors to various specialized careers that blend science with practical applications. For those interested in healthcare, becoming a pharmacist is a common goal, but it's important to understand how long does it take to become a pharmacist, as the journey typically requires extensive education and hands-on experience.

If you are fascinated by the investigative side of science, careers like an autopsy tech might be appealing. This role requires specialized training to assist in medical examinations and contributes to forensic investigations.

Many students seek flexible learning options and can explore degrees such as an online forensic science degree. This path offers comprehensive knowledge in analyzing physical evidence, ideal for those who want to merge chemistry with legal processes.

Additionally, for those interested in the psychological aspects behind legal cases, an online master's in forensic psychology provides advanced education to work in mental health evaluations within the justice system.

Best Scientists Citing Wolfgang H. Meyer

Trending Scientists