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Guangwei He

Guangwei He

D-Index & Metrics

Materials Science

D-Index
55
Citations
8979
World Ranking
8711
National Ranking
2135

Overview

Guangwei He is affiliated with MIT in the United States and conducts research primarily in the fields of Engineering and Materials Science. Their work spans multiple subfields, including Materials Chemistry, Mechanical Engineering, Inorganic Chemistry, Electrical and Electronic Engineering, and Biomedical Engineering.

Their research topics focus chiefly on membrane technologies and functional materials, with significant coverage in Membrane Separation and Gas Transport, Metal-Organic Frameworks: Synthesis and Applications, Covalent Organic Framework Applications, Graphene research and applications, Nanopore and Nanochannel Transport Studies, Membrane Separation Technologies, and Fuel Cells and Related Materials.

Guangwei He has authored papers in leading scientific journals. Recent publications include:

  • Two-dimensional nanochannel membranes for molecular and ionic separations, 2020, Chemical Society Reviews
  • De Novo Design of Covalent Organic Framework Membranes toward Ultrafast Anion Transport, 2020, Advanced Materials
  • Engineering Covalent Organic Framework Membranes, 2021, Accounts of Materials Research
  • Missing-linker Defects in Covalent Organic Framework Membranes for Efficient CO2 Separation, 2022, Angewandte Chemie International Edition
  • Irreversible synthesis of an ultrastrong two-dimensional polymeric material, 2022, Nature

Frequent coauthors of Guangwei He include Zhongyi Jiang, Yanxiong Ren, Hanze Ma, Hong Wu, and Xu Liang. These collaborations have contributed to a robust research output in the relevant fields.

The scientist's work is published in various journals with repeated contributions to the following venues:

  • Journal of Membrane Science
  • Angewandte Chemie
  • Angewandte Chemie International Edition
  • Advanced Materials
  • Advanced Functional Materials

Best Publications

  • Advances in high permeability polymer-based membrane materials for CO2 separations

    Shaofei Wang;Xueqin Li;Hong Wu;Zhizhang Tian

  • Nanostructured Ion‐Exchange Membranes for Fuel Cells: Recent Advances and Perspectives

    Guangwei He;Zhen Li;Jing Zhao;Shaofei Wang

  • Two-dimensional nanochannel membranes for molecular and ionic separations

    Shaofei Wang;Shaofei Wang;Leixin Yang;Guangwei He;Guangwei He;Benbing Shi

  • Recent advances in the fabrication of advanced composite membranes

    Yifan Li;Guangwei He;Shaofei Wang;Shengnan Yu

  • Facilitated transport of small molecules and ions for energy-efficient membranes

    Yifan Li;Shaofei Wang;Guangwei He;Hong Wu

  • A highly permeable graphene oxide membrane with fast and selective transport nanochannels for efficient carbon capture

    Shaofei Wang;Shaofei Wang;Yingzhen Wu;Ning Zhang;Guangwei He

  • Single-layer graphene membranes by crack-free transfer for gas mixture separation

    Shiqi Huang;Mostapha Dakhchoune;Wen Luo;Emad Oveisi

  • De Novo Design of Covalent Organic Framework Membranes toward Ultrafast Anion Transport.

    Xueyi He;Yi Yang;Hong Wu;Guangwei He

  • Etching gas-sieving nanopores in single-layer graphene with an angstrom precision for high-performance gas mixture separation.

    J. Zhao;J. Zhao;G. He;S. Huang;L. F. Villalobos

  • Enhanced proton conductivity of Nafion hybrid membrane under different humidities by incorporating metal-organic frameworks with high phytic acid loading.

    Zhen Li;Guangwei He;Bei Zhang;Ying Cao

  • Restricting Lattice Flexibility in Polycrystalline Metal-Organic Framework Membranes for Carbon Capture.

    Deepu J. Babu;Guangwei He;Jian Hao;Mohammad Tohidi Vahdat

  • Efficient CO2 capture by humidified polymer electrolyte membranes with tunable water state

    Yifan Li;Qingping Xin;Hong Wu;Ruili Guo

  • Synthesis of Poly(methyl methacrylate) Nanosize Particles by Differential Microemulsion Polymerization

    Guangwei He;Qinmin Pan;Garry L. Rempel

  • Fabricating graphene oxide-based ultrathin hybrid membrane for pervaporation dehydration via layer-by-layer self-assembly driven by multiple interactions

    Jing Zhao;Yiwei Zhu;Fusheng Pan;Guangwei He

  • Engineering Covalent Organic Framework Membranes

    Guangwei He;Guangwei He;Runnan Zhang;Zhongyi Jiang;Zhongyi Jiang

  • Enhanced proton conductivity of proton exchange membranes by incorporating sulfonated metal-organic frameworks

    Zhen Li;Guangwei He;Yuning Zhao;Ying Cao

  • Constructing efficient ion nanochannels in alkaline anion exchange membranes by the in situ assembly of a poly(ionic liquid) in metal–organic frameworks

    Zhen Li;Wenyu Wang;Yijing Chen;Chuanye Xiong

  • Irreversible synthesis of an ultrastrong two-dimensional polymeric material

    Unknown

  • Graphene Oxide Membranes with Heterogeneous Nanodomains for Efficient CO2 Separations.

    Shaofei Wang;Shaofei Wang;Yu Xie;Guangwei He;Qingping Xin

  • Enhanced proton conductivity of Nafion nanohybrid membrane incorporated with phosphonic acid functionalized graphene oxide at elevated temperature and low humidity

    Bei Zhang;Ying Cao;Shengtao Jiang;Zhen Li

  • Incorporating Zwitterionic Graphene Oxides into Sodium Alginate Membrane for Efficient Water/Alcohol Separation

    Jing Zhao;Yiwei Zhu;Guangwei He;Ruisi Xing

  • High-permeance polymer-functionalized single-layer graphene membranes that surpass the postcombustion carbon capture target

    Guangwei He;Shiqi Huang;Luis Francisco Villalobos;Jing Zhao

Frequent Co-Authors

Zhongyi Jiang
Zhongyi Jiang Tianjin University
Hong Wu
Hong Wu Tianjin University
Shaofei Wang
Shaofei Wang King Abdullah University of Science and Technology
Yifan Li
Yifan Li Zhengzhou University
Michael D. Guiver
Michael D. Guiver Tianjin University
Fusheng Pan
Fusheng Pan Tianjin University
Xinlin Yang
Xinlin Yang Nankai University
Xingzhong Cao
Xingzhong Cao Chinese Academy of Sciences
Yan Yin
Yan Yin Tianjin University

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