World's Best Scientists 2026 revealed!

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Chemistry

D-Index
70
Citations
14605
World Ranking
5998
National Ranking
1828

Overview

Stuart Licht is affiliated with George Washington University in the United States. Their research spans fields including Engineering and Materials Science, focusing on subfields such as Electrical and Electronic Engineering, Materials Chemistry, Mechanical Engineering, Electronic, Optical and Magnetic Materials, and Fluid Flow and Transfer Processes.

The main topics they have worked on include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Carbon Nanotubes in Composites
  • Carbon Dioxide Capture Technologies
  • Supercapacitor Materials and Fabrication
  • Molten salt chemistry and electrochemical processes
  • Graphene research and applications

Stuart Licht has authored multiple recent papers such as:

  • "Revealing nitrogen-containing species in commercial catalysts used for ammonia electrosynthesis" (2020, Nature Catalysis)
  • "Therapeutic enzyme engineering using a generative neural network" (2022, Scientific Reports)
  • "Magnetic carbon nanotubes: Carbide nucleated electrochemical growth of ferromagnetic CNTs from CO2" (2020, Journal of CO2 Utilization)
  • "One pot facile transformation of CO2 to an unusual 3-D nano-scaffold morphology of carbon" (2020, Scientific Reports)
  • "Controlled Transition Metal Nucleated Growth of Carbon Nanotubes by Molten Electrolysis of CO2" (2022, Catalysts)

Frequent collaborators include:

  • Gad Licht
  • Kyle Hofstetter
  • Xinye Liu
  • Xirui Wang

The scientist has published in venues such as:

  • DeCarbon
  • Invention Disclosure
  • Scientific Reports
  • Nature Catalysis
  • Catalysts

Best Publications

  • Ammonia synthesis by n2 and steam electrolysis in molten hydroxide suspensions of nanoscale fe2o3

    Stuart Licht;Baochen Cui;Baohui Wang;Fang-Fang Li

  • Efficient Solar Water Splitting, Exemplified by RuO2-Catalyzed AlGaAs/Si Photoelectrolysis

    S. Licht;and B. Wang;S. Mukerji;T. Soga and

  • Thiyl Radicals in Ribonucleotide Reductases

    Stuart Licht;Gary J. Gerfen;JoAnne Stubbe

  • Energetic Iron(VI) chemistry: the super-iron battery

    Stuart Licht;Baohui Wang;Susanta Ghosh

  • A Solid Sulfur Cathode for Aqueous Batteries

    Dharmasena Peramunage;Stuart Licht

  • The Fundamental Conductivity and Resistivity of Water

    Truman S. Light;Stuart Licht;Anthony C. Bevilacqua;Kenneth R. Morash

  • One-Pot Synthesis of Carbon Nanofibers from CO2

    Jiawen Ren;Fang-Fang Li;Jason Lau;Luis González-Urbina

  • Over 18% solar energy conversion to generation of hydrogen fuel; theory and experiment for efficient solar water splitting

    S Licht;B Wang;S Mukerji;T Soga

  • Solar hydrogen generation : toward a renewable energy future

    Krishnan Rajeshwar;Robert D. McConnell;Stuart Licht

  • Aqueous Solubilities, Solubility Products and Standard Oxidation‐Reduction Potentials of the Metal Sulfides

    Stuart Licht

  • Multiple Band Gap Semiconductor/Electrolyte Solar Energy Conversion

    Stuart Licht

  • Carbon Nanotubes Produced from Ambient Carbon Dioxide for Environmentally Sustainable Lithium-Ion and Sodium-Ion Battery Anodes

    Stuart Licht;Anna Douglas;Jiawen Ren;Rachel Carter

  • A New Solar Carbon Capture Process: Solar Thermal Electrochemical Photo (STEP) Carbon Capture

    Stuart Licht;Baohui Wang;Susanta Ghosh;Hina Ayub

  • Analysis of ferrate(VI) compounds and super-iron Fe(VI) battery cathodes: FTIR, ICP, titrimetric, XRD, UV/VIS, and electrochemical characterization

    Stuart Licht;Vera Naschitz;Leonid Halperin;Nadezhda Halperin

  • One-pot synthesis of nanostructured carbon materials from carbon dioxide via electrolysis in molten carbonate salts

    Hongjun Wu;Zhida Li;Deqiang Ji;Yue Liu

  • Electrochemical synthesis of ammonia directly from N2 and water over iron-based catalysts supported on activated carbon

    Baochen Cui;Jianhua Zhang;Shuzhi Liu;Xianjun Liu

  • Electrolyte modified photoelectrochemical solar cells

    Stuart Licht

  • A light-variation insensitive high efficiency solar cell

    Stuart Licht;Gary Hodes;Reshef Tenne;Joost Manassen

  • Efficient Solar‐Driven Synthesis, Carbon Capture, and Desalinization, STEP: Solar Thermal Electrochemical Production of Fuels, Metals, Bleach

    S. Licht

  • Efficient photoelectrochemical solar cells from electrolyte modification

    Stuart Licht;Dharmasena Peramunage

Frequent Co-Authors

Gary Hodes
Gary Hodes Weizmann Institute of Science
Reshef Tenne
Reshef Tenne Weizmann Institute of Science
Masayoshi Umeno
Masayoshi Umeno Chubu University
Tetsuo Soga
Tetsuo Soga Nagoya Institute of Technology
Wenzhen Li
Wenzhen Li Iowa State University
David E. Ramaker
David E. Ramaker George Washington University
Huaiyuan Wang
Huaiyuan Wang Tianjin University
Eugene A. Katz
Eugene A. Katz Ben-Gurion University of the Negev
Doron Aurbach
Doron Aurbach Bar-Ilan University

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