World's Best Scientists 2026 revealed!
Matthew J. Rosseinsky

Matthew J. Rosseinsky

D-Index & Metrics

Chemistry

D-Index
98
Citations
44432
World Ranking
1375
National Ranking
74

Research.com Recognitions

  • 2017 - Davy Medal, Royal Society of London (UK) his advances in the design and discovery of functional materials, integrating the development of new experimental and computational techniques
  • 2012 - Member of Academia Europaea
  • 2011 - Hughes Medal, Royal Society of London for his influential discoveries in the synthetic chemistry of solid state electronic materials and novel microporous structures
  • 2009 - De Gennes Prize, Royal Society of Chemistry (UK)
  • 2008 - Fellow of the Royal Society, United Kingdom
  • 2006 - Tilden Prize, Royal Society of Chemistry (UK)
  • 2000 - Corday–Morgan Prize, Royal Society of Chemistry (UK)
  • 1991 - Edward Harrison Memorial Prize, Royal Society of Chemistry (UK)

Overview

Matthew J. Rosseinsky is affiliated with the University of Liverpool in the United Kingdom and focuses primarily on Materials Science. Their research extends deeply into several subfields, including Materials Chemistry, Electrical and Electronic Engineering, Inorganic Chemistry, Electronic, Optical and Magnetic Materials, and Condensed Matter Physics.

Their published work addresses various key topics within materials science, such as:

  • X-ray Diffraction in Crystallography
  • Crystallization and Solubility Studies
  • Machine Learning in Materials Science
  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials
  • Advanced Condensed Matter Physics
  • Metal-Organic Frameworks: Synthesis and Applications

The scientist has contributed extensively to the literature with recent papers including:

  • How Reproducible are Surface Areas Calculated from the BET Equation? (2022, Advanced Materials)
  • Low thermal conductivity in a modular inorganic material with bonding anisotropy and mismatch (2021, Science)
  • Highly Absorbing Lead-Free Semiconductor Cu2AgBiI6 for Photovoltaic Applications from the Quaternary CuI-AgI-BiI3 Phase Space (2021, Journal of the American Chemical Society)
  • Differential guest location by host dynamics enhances propylene/propane separation in a metal-organic framework (2020, Nature Communications)
  • Charge-Carrier Mobility and Localization in Semiconducting Cu2AgBiI6 for Photovoltaic Applications (2021, ACS Energy Letters)

Frequent co-authors in their collaborations include:

  • Matthew S. Dyer
  • John B. Claridge
  • Luke M. Daniels
  • Marco Zanella
  • Frédéric Blanc

Their research is published predominantly in venues such as:

  • The Cambridge Structural Database
  • arXiv (Cornell University)
  • Chemistry of Materials
  • Journal of the American Chemical Society
  • Angewandte Chemie International Edition

Throughout their career, Matthew J. Rosseinsky has been recognized with several awards, including:

  • Davy Medal, Royal Society of London (UK), 2017, for advances in the design and discovery of functional materials integrating experimental and computational techniques
  • Member of Academia Europaea, 2012
  • Hughes Medal, Royal Society of London, 2011, for influential discoveries in synthetic chemistry of solid state electronic materials and novel microporous structures
  • De Gennes Prize, Royal Society of Chemistry (UK), 2009
  • Fellow of the Royal Society, United Kingdom, 2008
  • Tilden Prize, Royal Society of Chemistry (UK), 2006
  • Corday-Morgan Prize, Royal Society of Chemistry (UK), 2000
  • Edward Harrison Memorial Prize, Royal Society of Chemistry (UK), 1991

Best Publications

  • Superconductivity at 18 K in potassium-doped C60

    A.F. Hebard;M.J. Rosseinsky;R.C. Haddon;D.W. Murphy

  • Conjugated Microporous Poly(aryleneethynylene) Networks

    Jia-Xing Jiang;Fabing Su;Abbie Trewin;Colin D. Wood

  • Hysteretic adsorption and desorption of hydrogen by nanoporous metal-organic frameworks.

    Xuebo Zhao;Bo Xiao;Bo Xiao;Ashleigh J. Fletcher;Ashleigh J. Fletcher;K. Mark Thomas;K. Mark Thomas

  • Design, Chirality, and Flexibility in Nanoporous Molecule-Based Materials

    Bradshaw D;Claridge Jb;Cussen Ej;Prior Tj

  • Conducting films of C60 and C70 by alkali-metal doping

    R. C. Haddon;A. F. Hebard;M. J. Rosseinsky;D. W. Murphy

  • Superconductivity at 28 K in RbxC60.

    M. J. Rosseinsky;A. P. Ramirez;S. H. Glarum;D. W. Murphy

  • A Water‐Stable Porphyrin‐Based Metal–Organic Framework Active for Visible‐Light Photocatalysis

    Alexandra Fateeva;Philip A. Chater;Christopher P. Ireland;Asif A. Tahir

  • A Versatile Family of Interconvertible Microporous Chiral Molecular Frameworks: The First Example of Ligand Control of Network Chirality

    C. J. Kepert;and T. J. Prior;M. J. Rosseinsky

  • Recent developments in metal–organic framework chemistry: design, discovery, permanent porosity and flexibility ☆

    M.J. Rosseinsky

  • Hydrogen Storage in Microporous Hypercrosslinked Organic Polymer Networks

    Colin D. Wood;Bien Tan;Abbie Trewin;Hongjun Niu

  • Relation of structure and superconducting transition temperatures in A3C60

    R. M. Fleming;A. P. Ramirez;M. J. Rosseinsky;D. W. Murphy

  • Flexibility in metal-organic framework materials: impact on sorption properties

    Ashleigh J. Fletcher;K. Mark Thomas;Matthew J. Rosseinsky

  • Permanent microporosity and enantioselective sorption in a chiral open framework.

    Darren Bradshaw;Timothy J. Prior;Edmund J. Cussen;John B. Claridge

  • A guest-responsive fluorescent 3D microporous metal-organic framework derived from a long-lifetime pyrene core.

    Kyriakos C. Stylianou;Romain Heck;Samantha Y. Chong;John Bacsa

  • Corrigendum: Conjugated microporous poly(aryleneethynylene) networks

    Jia-Xing Jiang;Fabing Su;Abbie Trewin;Colin D. Wood

  • Hydrogen adsorption in microporous hypercrosslinked polymers

    Jun-Young Lee;Colin D. Wood;Darren Bradshaw;Matthew J. Rosseinsky

  • A Family of Nanoporous Materials Based on an Amino Acid Backbone

    Ramanathan Vaidhyanathan;Darren Bradshaw;Jean-Noel Rebilly;Jorge P. Barrio

  • Microporous organic polymers for methane storage

    Colin D. Wood;Bien Tan;Abbie Trewin;Fabing Su

  • Sodium Hydride as a Powerful Reducing Agent for Topotactic Oxide Deintercalation: Synthesis and Characterization of the Nickel(I) Oxide LaNiO2

    M. A. Hayward;M. A. Green;M. J. Rosseinsky;J. Sloan

  • Adsorption dynamics of gases and vapors on the nanoporous metal organic framework material Ni2(4,4'-bipyridine)3(NO3)4: guest modification of host sorption behavior.

    A.J. Fletcher;E.J. Cussen;T.J. Prior;M.J. Rosseinsky

  • Preparation and structure of the alkali-metal fulleride A4C60

    R. M. Fleming;M. J. Rosseinsky;A. P. Ramirez;D. W. Murphy

Frequent Co-Authors

John B. Claridge
John B. Claridge University of Liverpool
Kosmas Prassides
Kosmas Prassides Osaka Metropolitan University
Peter D. Battle
Peter D. Battle University of Oxford
Mathieu Allix
Mathieu Allix University of Orléans
John Bacsa
John Bacsa Emory University
Mark A. Green
Mark A. Green University of Kent
Donald W. Murphy
Donald W. Murphy Alcatel Lucent (Germany)
Paul R. Chalker
Paul R. Chalker University of Liverpool
Yaroslav Z. Khimyak
Yaroslav Z. Khimyak University of East Anglia
John E. Warren
John E. Warren University of Manchester

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