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Materials Science

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Overview

Marnix Wagemaker is affiliated with Delft University of Technology in the Netherlands and conducts research primarily in the field of Engineering. Their scholarly work spans several subfields including Electrical and Electronic Engineering, Automotive Engineering, Materials Chemistry, Inorganic Chemistry, and Electronic, Optical and Magnetic Materials.

The scientist has published extensively on topics related to advanced battery materials and technologies. Key research areas include advancements in battery materials, advanced battery technologies research, thermal expansion and ionic conductivity, inorganic chemistry and materials, and supercapacitor materials and fabrication.

Their recent notable publications are:

  • Rational design of layered oxide materials for sodium-ion batteries, 2020, Science
  • Interface chemistry of an amide electrolyte for highly reversible lithium metal batteries, 2020, Nature Communications
  • Revealing High Na-Content P2-Type Layered Oxides as Advanced Sodium-Ion Cathodes, 2020, Journal of the American Chemical Society
  • Origin of fast charging in hard carbon anodes, 2024, Nature Energy
  • High entropy liquid electrolytes for lithium batteries, 2023, Nature Communications

Wagemaker collaborates frequently with several researchers, reflecting a network of partnerships across various studies. Their common coauthors include Swapna Ganapathy, Chenglong Zhao, Alexandros Vasileiadis, Qidi Wang, and Ming Liu.

The body of work by Wagemaker appears frequently in a select group of publication venues, which include:

  • Nature Communications
  • Advanced Energy Materials
  • Journal of the American Chemical Society
  • Nature Energy
  • ACS Applied Energy Materials

The research contributions of Marnix Wagemaker demonstrate a clear focus on energy storage solutions, particularly related to battery technology. The integration of multiple engineering disciplines and chemistry subfields into their work illustrates a multidisciplinary approach to solving challenges in materials design and electrochemical performance.

Best Publications

  • Rational design of layered oxide materials for sodium-ion batteries

    Chenglong Zhao;Qidi Wang;Zhenpeng Yao;Jianlin Wang

  • Large Impact of Particle Size on Insertion Reactions. A Case for Anatase LixTiO2

    Marnix Wagemaker;Wouter J. H. Borghols;Fokko M. Mulder

  • Review of Recent Development of In Situ/Operando Characterization Techniques for Lithium Battery Research

    Dongqing Liu;Zulipiya Shadike;Ruoqian Lin;Kun Qian

  • Equilibrium lithium transport between nanocrystalline phases in intercalated TiO2 anatase

    M. Wagemaker;A. P. M. Kentgens;F. M. Mulder

  • Size Effects in the Li4+xTi5O12 Spinel

    W. J. H. Borghols;M. Wagemaker;U. Lafont;E. M. Kelder

  • Clarifying the relationship between redox activity and electrochemical stability in solid electrolytes

    Tammo K. Schwietert;Violetta A. Arszelewska;Chao Wang;Chuang Yu

  • Accessing the bottleneck in all-solid state batteries, lithium-ion transport over the solid-electrolyte-electrode interface

    Chuang Yu;Swapna Ganapathy;Ernst R. H. van Eck;Heng Wang

  • Interface chemistry of an amide electrolyte for highly reversible lithium metal batteries

    Qidi Wang;Zhenpeng Yao;Chenglong Zhao;Tomas Verhallen

  • Revealing High Na-Content P2-Type Layered Oxides as Advanced Sodium-Ion Cathodes

    Chenglong Zhao;Zhenpeng Yao;Qidi Wang;Haifeng Li

  • Origin of fast charging in hard carbon anodes

    Unknown

  • Two Phase Morphology Limits Lithium Diffusion in TiO2 (Anatase): A 7Li MAS NMR Study

    M. Wagemaker;R. van de Krol;A.P.M. Kentgens;A.A. van Well

  • Nature of Li2O2 Oxidation in a Li–O2 Battery Revealed by Operando X-ray Diffraction

    Swapna Ganapathy;Brian D. Adams;Georgiana Stenou;Maria S. Anastasaki

  • Multiple Li positions inside oxygen octahedra in lithiated TiO2 anatase.

    Marnix Wagemaker;Gordon J. Kearley;Ad A. Van Well;Hannu Mutka

  • Diffusion Mechanism of Li Argyrodite Solid Electrolytes for Li-Ion Batteries and Prediction of Optimized Halogen Doping : The Effect of Li Vacancies, Halogens, and Halogen Disorder

    Niek J. J. de Klerk;Irek Rosłoń;Marnix Wagemaker

  • Synthesis, structure and electrochemical performance of the argyrodite Li6PS5Cl solid electrolyte for Li-ion solid state batteries

    Chuang Yu;Lambert van Eijck;Swapna Ganapathy;Marnix Wagemaker

  • Properties and promises of nanosized insertion materials for Li-ion batteries.

    Marnix Wagemaker;Fokko M. Mulder

  • Proof of Supervalent Doping in Olivine LiFePO4

    Marnix Wagemaker;Brian L. Ellis;Dirk Lützenkirchen-Hecht;Fokko M. Mulder

  • A Kinetic Two‐Phase and Equilibrium Solid Solution in Spinel Li4+xTi5O12

    Marnix Wagemaker;Daniel R. Simon;Erik M. Kelder;Joop Schoonman

  • Mechanistic Insight into the Electrochemical Performance of Zn/VO 2 Batteries with an Aqueous ZnSO 4 Electrolyte

    Zhaolong Li;Swapna Ganapathy;Yaolin Xu;Zhou Zhou

  • High entropy liquid electrolytes for lithium batteries

    Unknown

  • Li-Ion Diffusion in the Equilibrium Nanomorphology of Spinel Li4+xTi5O12

    Marnix Wagemaker;Ernst R. H. van Eck;Arno P. M. Kentgens;Fokko M. Mulder

  • The relationship between the redox activity and electrochemical stability of solid electrolytes for solid-state batteries

    Tammo Schwietert;Violetta Arszelewska;Chuang Yu;Chao Wang

Frequent Co-Authors

Fokko M. Mulder
Fokko M. Mulder Delft University of Technology
Chuang Yu
Chuang Yu Huazhong University of Science and Technology
Arno P. M. Kentgens
Arno P. M. Kentgens Radboud University
Baohua Li
Baohua Li Tsinghua University
Alán Aspuru-Guzik
Alán Aspuru-Guzik University of Toronto
Linda F. Nazar
Linda F. Nazar University of Waterloo
Gordon J. Kearley
Gordon J. Kearley University College Dublin
Joop Schoonman
Joop Schoonman Delft University of Technology
Feiyu Kang
Feiyu Kang Tsinghua University

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