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Materials Science

D-Index
41
Citations
8828
World Ranking
12668
National Ranking
170

Overview

Johannes Meier is affiliated with the University of Neuchâtel in Switzerland. Their research spans multiple disciplines, with a strong focus on intersections between computer science, social sciences, and business, management, and accounting.

The primary fields of study in Meier's work include:

  • Computer Science
  • Social Sciences
  • Business, Management and Accounting

Within these broad areas, several subfields emerge prominently in Meier's publications:

  • Computer Vision and Pattern Recognition
  • Artificial Intelligence
  • Law
  • Management of Technology and Innovation
  • Strategy and Management

The research topics Meier has addressed include:

  • Digitalization, Law, and Regulation
  • Advanced Neural Network Applications
  • Digital Innovation in Industries
  • Diverse Legal and Medical Studies
  • Robotics and Sensor-Based Localization
  • Video Surveillance and Tracking Methods
  • Explainable Artificial Intelligence (XAI)

Among Meier's recent papers are:

  • "Verjährungseintritt im Abgasskandal - Zugleich eine Besprechung des BGH, Urt. v. 17.12.2020 - VI ZR 739/20, MDR 2021, 230" (2021, Monatsschrift für Deutsches Recht)
  • "Investition in Krypto-Währungen (Bitcoin/ Ether) im Spannungsfeld zwischen Auftrag, GoA und Gefälligkeit" (2023, JuristenZeitung)

Other publications coauthored by Meier appear in venues such as arXiv (Cornell University) and Studien zur aussereuropäischen Christentumsgeschichte.

Frequent collaboration partners include:

  • Christian Conreder (13 co-authored works)
  • Oussema Dhaouadi (5 co-authored works)
  • Jacques Kaiser (4 co-authored works)
  • Daniel Cremers (3 co-authored works)
  • Luca Scalerandi (2 co-authored works)

Some of Meier's work also appears in book form. Notably, Meier contributed to a publication titled eWpG (2023) under the Berliner Kommentare publisher.

Publication venues frequently selected by Meier for disseminating research include:

  • arXiv (Cornell University)
  • Monatsschrift für Deutsches Recht
  • Studien zur aussereuropäischen Christentumsgeschichte
  • JuristenZeitung
  • Archiv für die civilistische Praxis

Meier's interdisciplinary contributions integrate legal studies with emerging technology fields, especially in the use of artificial intelligence methods, digital innovation, and regulatory contexts. The research also reflects a balance between theoretical and applied approaches across various sectors.

Best Publications

  • Thin‐film silicon solar cell technology

    A. V. Shah;H. Schade;M. Vanecek;J. Meier

  • Complete microcrystalline p-i-n solar cell—Crystalline or amorphous cell behavior?

    J. Meier;R. Flückiger;H. Keppner;Arvind Shah

  • Material and solar cell research in microcrystalline silicon

    Arvind Shah;Johannes Meier;Evelyne Vallat-Sauvain;Nicolas Wyrsch

  • Microcrystalline silicon and micromorph tandem solar cells

    H. Keppner;Johannes Meier;P. Torres;D. Fischer

  • Hydrogen in amorphous and microcrystalline silicon films prepared by hydrogen dilution

    U. Kroll;J. Meier;Arvind Shah;S. Mikhailov

  • Optical absorption and light scattering in microcrystalline silicon thin films and solar cells

    A. Poruba;A. Fejfar;Z. Remeš;J. Špringer

  • Relationship between Raman crystallinity and open-circuit voltage in microcrystalline silicon solar cells

    C. Droz;Evelyne Vallat-Sauvain;J. Bailat;L. Feitknecht

  • Potential of amorphous and microcrystalline silicon solar cells

    J. Meier;J. Spitznagel;U. Kroll;C. Bucher

  • On the Way towards High-Efficiency Thin Film Silicon Solar Cells by the "Micromorph" Concept

    J. Meier;P. Torres;R. Platz;S. Dubail

  • Device grade microcrystalline silicon owing to reduced oxygen contamination

    P. Torres;J. Meier;R. Flückiger;U. Kroll

  • Evolution of the microstructure in microcrystalline silicon prepared by very high frequency glow-discharge using hydrogen dilution

    Evelyne Vallat-Sauvain;U. Kroll;J. Meier;Arvind Shah

  • Microcrystalline silicon and ‘micromorph’ tandem solar cells

    Arvind Shah;J. Meier;E. Vallat-Sauvain;C. Droz

  • Microcrystalline/micromorph silicon thin-film solar cells prepared by VHF-GD technique

    Johannes Meier;Evelyne Vallat-Sauvain;S. Dubail;U. Kroll

  • Towards Very Low-Cost Mass Production of Thin-film Silicon Photovoltaic (PV) Solar Modules on Glass

    A. Shah;J. Meier;A. Buechel;U. Kroll

  • Microcrystalline silicon and the impact on micromorph tandem solar cells

    Johannes Meier;S. Dubail;S. Golay;U. Kroll

  • Towards high-efficiency thin-film silicon solar cells with the “micromorph” concept

    Johannes Meier;S. Dubail;R. Platz;Pedro Torres

  • Recent Progress in Micromorph Solar Cells

    Johannes Meier;S. Dubail;J. Cuperus;U. Kroll

  • High rate growth of microcrystalline silicon by VHF-GD at high pressure

    U. Graf;Johannes Meier;U. Kroll;J. Bailat

  • Basic efficiency limits, recent experimental results and novel light-trapping schemes in a-Si:H, μc-Si:H and `micromorph tandem' solar cells

    Arvind V Shah;Milan Vaněček;Johannes Meier;Fanny Meillaud

  • From amorphous to microcrystalline silicon films prepared by / hydrogen dilution using the VHF 70 MHz GD technique

    U. Kroll;Johannes Meier;Pedro Torres;J. Pohl

Frequent Co-Authors

Christophe Ballif
Christophe Ballif École Polytechnique Fédérale de Lausanne
Candido Pirri
Candido Pirri Polytechnic University of Turin
Elena Maria Tresso
Elena Maria Tresso Polytechnic University of Turin
Fabrizio Giorgis
Fabrizio Giorgis Polytechnic University of Turin
Bernd Rech
Bernd Rech Helmholtz-Zentrum Berlin für Materialien und Energie
Joydeep Dutta
Joydeep Dutta Royal Institute of Technology
Akihisa Matsuda
Akihisa Matsuda National Institute of Advanced Industrial Science and Technology
Robert W. Collins
Robert W. Collins University of Toledo
Matthieu Despeisse
Matthieu Despeisse Swiss Center for Electronics and Microtechnology (Switzerland)

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