World's Best Scientists 2026 revealed!

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Materials Science

D-Index
57
Citations
10799
World Ranking
8005
National Ranking
315

Chemistry

D-Index
57
Citations
12333
World Ranking
11030
National Ranking
628

Research.com Recognitions

  • 2018 - Harrison-Meldola Memorial Prize, Royal Society of Chemistry (UK)

Overview

Kim E. Jelfs is affiliated with Imperial College London in the United Kingdom. Their research spans significant areas within materials science and chemistry, with a strong focus on materials chemistry and organic chemistry, as well as interdisciplinary connections to electrical and electronic engineering and inorganic chemistry.

The scientist's recent papers include:

  • N -Aryl-linked spirocyclic polymers for membrane separations of complex hydrocarbon mixtures, 2020, Science
  • Development of efficient aqueous organic redox flow batteries using ion-sieving sulfonated polymer membranes, 2022, Nature Communications
  • Selective ion transport through hydrated micropores in polymer membranes, 2024, Nature
  • A Family of Superhelicenes: Easily Tunable, Chiral Nanographenes by Merging Helicity with Planar π Systems, 2021, Angewandte Chemie International Edition
  • Switching between Local and Global Aromaticity in a Conjugated Macrocycle for High-Performance Organic Sodium-Ion Battery Anodes, 2020, Angewandte Chemie International Edition

Their frequent co-authors include Andrew Tarzia, Andrew I. Cooper, Marc A. Little, Rebecca L. Greenaway, and Filip Szczypiński.

Kim E. Jelfs has published regularly in various scientific venues. The most common publication venues include:

  • The Cambridge Structural Database
  • Angewandte Chemie International Edition
  • Chemical Science
  • Angewandte Chemie
  • Journal of the American Chemical Society

Research topics commonly addressed in their work cover:

  • X-ray Diffraction in Crystallography
  • Crystallization and Solubility Studies
  • Supramolecular Chemistry and Complexes
  • Metal-Organic Frameworks: Synthesis and Applications
  • Machine Learning in Materials Science
  • Covalent Organic Framework Applications
  • Supramolecular Self-Assembly in Materials

Their main fields of study center around:

  • Materials Science
  • Chemistry

Kim E. Jelfs has received the Harrison-Meldola Memorial Prize from the Royal Society of Chemistry (UK) in 2018.

Best Publications

  • Promoting transparency and reproducibility in enhanced molecular simulations

    M. Bonomi;M. Bonomi;B. Giovanni;C. Camilloni;G.A. Tribello

  • Polymer nanofilms with enhanced microporosity by interfacial polymerization

    Maria F. Jimenez-Solomon;Qilei Song;Kim E. Jelfs;Marta Munoz-Ibanez

  • Separation of rare gases and chiral molecules by selective binding in porous organic cages

    Linjiang Chen;Paul S. Reiss;Samantha Y. Chong;Daniel Holden

  • Modular and predictable assembly of porous organic molecular crystals

    James T. A. Jones;Tom Hasell;Xiaofeng Wu;John Bacsa

  • Hydrophilic microporous membranes for selective ion separation and flow-battery energy storage

    Rui Tan;Anqi Wang;Richard Malpass-Evans;Rhodri Williams

  • Molecular shape sorting using molecular organic cages

    Tamoghna Mitra;Kim E. Jelfs;Marc Schmidtmann;Adham Ahmed

  • Porous organic cage nanocrystals by solution mixing.

    Tom Hasell;Samantha Y. Chong;Kim E. Jelfs;Dave J. Adams

  • Porous organic cages for sulfur hexafluoride separation

    Tom Hasell;Marcin Miklitz;Andrew Stephenson;Marc A. Little

  • Acid- and Base-Stable Porous Organic Cages: Shape Persistence and pH Stability via Post-synthetic “Tying” of a Flexible Amine Cage

    Ming Liu;Marc A. Little;Kim E. Jelfs;James T. A. Jones

  • Hierarchically Structure-Directing Effect of Multi-Ammonium Surfactants for the Generation of MFI Zeolite Nanosheets

    Woojin Park;Woojin Park;Doae Yu;Kyungsu Na;Kyungsu Na;Kim E. Jelfs

  • N-Aryl–linked spirocyclic polymers for membrane separations of complex hydrocarbon mixtures

    Kirstie A. Thompson;Ronita Mathias;Daeok Kim;Jihoon Kim

  • High-throughput discovery of organic cages and catenanes using computational screening fused with robotic synthesis

    R. L. Greenaway;V. Santolini;M. J. Bennison;B. M. Alston

  • On–Off Porosity Switching in a Molecular Organic Solid

    James T. A. Jones;Daniel Holden;Tamoghna Mitra;Tom Hasell

  • Development of efficient aqueous organic redox flow batteries using ion-sieving sulfonated polymer membranes

    Unknown

  • Emergent Properties of an Organic Semiconductor Driven by its Molecular Chirality

    Ying Yang;Beth Rice;Xingyuan Shi;Jochen R. Brandt

  • Controlling the crystallization of porous organic cages: molecular analogs of isoreticular frameworks using shape-specific directing solvents.

    Tom Hasell;Jamie L. Culshaw;Samantha Y. Chong;Marc Schmidtmann

  • Large self-assembled chiral organic cages: synthesis, structure, and shape persistence.

    Kim E. Jelfs;Xiaofeng Wu;Marc Schmidtmann;James T. A. Jones

  • Structurally Diverse Covalent Triazine-Based Framework Materials for Photocatalytic Hydrogen Evolution from Water.

    Christian B Meier;Rob Clowes;Enrico Berardo;Kim E Jelfs

  • Selective ion transport through hydrated micropores in polymer membranes

    Unknown

  • Reticular synthesis of porous molecular 1D nanotubes and 3D networks

    A. G. Slater;M. A. Little;A. Pulido;S. Y. Chong

  • Topological landscapes of porous organic cages

    Valentina Santolini;Marcin Miklitz;Enrico Berardo;Kim E. Jelfs

  • Modular and predictable assembly of porous organic molecular crystals

    AI Cooper;GM Day;Jta Jones;X Wu

Frequent Co-Authors

Andrew I. Cooper
Andrew I. Cooper University of Liverpool
Tom Hasell
Tom Hasell University of Liverpool
Graeme M. Day
Graeme M. Day University of Southampton
Dave J. Adams
Dave J. Adams University of Glasgow
Rob Clowes
Rob Clowes University of Liverpool
Xiao-Feng Wu
Xiao-Feng Wu Dalian Institute of Chemical Physics
Matthew J. Fuchter
Matthew J. Fuchter Imperial College London
Stefan T. Bromley
Stefan T. Bromley University of Barcelona
Jenny Nelson
Jenny Nelson Imperial College London
Ben Slater
Ben Slater University College London

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