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Materials Science

D-Index
67
Citations
14352
World Ranking
5176
National Ranking
1583

Overview

Qihua Wang is affiliated with the Chinese Academy of Sciences in China and has an extensive publication record in the fields of engineering and materials science. Their work encompasses both fundamental and applied research, particularly focusing on polymers, mechanical engineering, and materials chemistry.

The main fields of study for Qihua Wang include:

  • Engineering
  • Materials Science

Within these broad categories, their research is more specifically focused on subfields such as:

  • Polymers and Plastics
  • Mechanics of Materials
  • Mechanical Engineering
  • Materials Chemistry
  • Biomedical Engineering

Qihua Wang's research interests cover a variety of topics including:

  • Tribology and Wear Analysis
  • Polymer composites and self-healing
  • Lubricants and Their Additives
  • Synthesis and properties of polymers
  • Photochromic and Fluorescence Chemistry
  • Advanced Sensor and Energy Harvesting Materials
  • Polymer Nanocomposites and Properties

The scientist has contributed work to several frequent publication venues, indicating active participation in specialized academic communities:

  • Tribology International
  • SSRN Electronic Journal
  • ACS Applied Polymer Materials
  • Chemical Engineering Journal
  • Journal of Applied Polymer Science

Collaborations with other researchers appear significant in Qihua Wang's career, with frequent coauthors including:

  • Tingmei Wang (104 joint publications)
  • Yaoming Zhang (90 joint publications)
  • Xinrui Zhang (41 joint publications)
  • Liming Tao (41 joint publications)
  • Zenghui Yang (40 joint publications)

Recent papers authored or coauthored by Qihua Wang highlight developments in polymer materials and tribological applications. Notable publications include:

  • "Room-temperature self-healing supramolecular polyurethanes based on the synergistic strengthening of biomimetic hierarchical hydrogen-bonding interactions and coordination bonds" (2022, Chemical Engineering Journal)
  • "Molecularly Engineered Unparalleled Strength and Supertoughness of Poly(urea-urethane) with Shape Memory and Clusterization-Triggered Emission" (2022, Advanced Materials)
  • "A stretchable, mechanically robust polymer exhibiting shape-memory-assisted self-healing and clustering-triggered emission" (2023, Nature Communications)
  • "Microstructure and tribological behavior of a novel atmospheric plasma sprayed AlCoCrFeNi high entropy alloy matrix self-lubricating composite coatings" (2020, Tribology International)
  • "MXene-Al2O3 synergize to reduce friction and wear on epoxy-steel contacts lubricated with ultra-low sulfur diesel" (2020, Tribology International)

Best Publications

  • Morphology-controllable synthesis of cobalt oxalates and their conversion to mesoporous Co3O4 nanostructures for application in supercapacitors.

    Dewei Wang;Qihua Wang;Tingmei Wang

  • The effect of particle size of nanometer ZrO2 on the tribological behaviour of PEEK

    Qihua Wang;Qunji Xue;Huiwen Liu;Weichang Shen

  • Dual-Triggered and Thermally Reconfigurable Shape Memory Graphene-Vitrimer Composites.

    Zenghui Yang;Qihua Wang;Tingmei Wang

  • The friction and wear properties of nanometre SiO2 filled polyetheretherketone

    Qihua Wang;Qunji Xue;Weichang Shen

  • An investigation of the friction and wear properties of nanometer Si3N4 filled PEEK

    QiHua Wang;Jinfen Xu;Weichang Shen;Weimin Liu

  • The friction and wear characteristics of nanometer SiC and polytetrafluoroethylene filled polyetheretherketone

    Qi-Hua Wang;Qun-Ji Xue;Wei-Min Liu;Jian-Min Chen

  • Wear mechanisms of polyetheretherketone composites filled with various kinds of SiC

    Qun-Ji Xue;Qi-Hua Wang

  • Phosphorus doped graphene nanosheets for room temperature NH3 sensing

    Fang Niu;Li-Ming Tao;Yu-Chao Deng;Qi-Hua Wang

  • Nanostructured Fe2O3–graphene composite as a novel electrode material for supercapacitors

    Dewei Wang;Yuqi Li;Qihua Wang;Tingmei Wang

  • The effect of nanometer SiC filler on the tribological behavior of PEEK

    Qi-Hua Wang;Jinfen Xu;Weichang Shen;Qunji Xue

  • In situ polymerization and mechanical, thermal properties of polyurethane/graphene oxide/epoxy nanocomposites

    Yuqi Li;Diyuan Pan;Shoubin Chen;Qihua Wang

  • Study on the synergistic effect of carbon fiber and graphite and nanoparticle on the friction and wear behavior of polyimide composites

    Qihua Wang;Xinrui Zhang;Xianqiang Pei

  • Preparation and tribological properties of graphene oxide/nitrile rubber nanocomposites

    Yuqi Li;Qihua Wang;Tingmei Wang;Guangqin Pan

  • Friction and wear of fiber reinforced polyimide composites

    Gai Zhao;Gai Zhao;Irina Hussainova;Maksim Antonov;Qihua Wang

  • Poly(vinyl butyral) based polymer networks with dual-responsive shape memory and self-healing properties

    Yongkang Bai;Yu Chen;Qihua Wang;Tingmei Wang

  • High performance shape memory polyimides based on π–π interactions

    Qihua Wang;Yongkang Bai;Yu Chen;Junping Ju

  • In situ synthesis and thermal, tribological properties of thermosetting polyimide/graphene oxide nanocomposites

    Hong Liu;Yuqi Li;Tingmei Wang;Qihua Wang

  • A tough shape memory polymer with triple-shape memory and two-way shape memory properties

    Yongkang Bai;Xinrui Zhang;Qihua Wang;Tingmei Wang

  • Friction and wear studies of polyimide composites filled with short carbon fibers and graphite and micro SiO2

    Xin-Rui Zhang;Xian-Qiang Pei;Qi-Hua Wang

  • Controlled growth of pyrite FeS2 crystallites by a facile surfactant-assisted solvothermal method

    De Wei Wang;Qi Hua Wang;Ting Mei Wang

  • Controlled synthesis of mesoporous hematite nanostructures and their application as electrochemical capacitor electrodes.

    Dewei Wang;Qihua Wang;Tingmei Wang

  • Microstructure and tribological behavior of a novel atmospheric plasma sprayed AlCoCrFeNi high entropy alloy matrix self-lubricating composite coatings

    Peiying Shi;Yuan Yu;Nina Xiong;Mingzi Liu

  • The friction and wear properties of nanometer ZrO2-filled polyetheretherketone

    Qihua Wang;Qunji Xue;Weichang Shen;Junyan Zhang

Frequent Co-Authors

Tingmei Wang
Tingmei Wang Chinese Academy of Sciences
Yu Chen
Yu Chen Shanghai University
Di Zhang
Di Zhang Tohoku University
Jianmin Chen
Jianmin Chen Fudan University
Rui Yang
Rui Yang Chinese Academy of Sciences
Hong Liu
Hong Liu Shandong University
Qunji Xue
Qunji Xue Lanzhou Institute of Chemical Physics
Weimin Liu
Weimin Liu Chinese Academy of Sciences
Weimin Liu
Weimin Liu Lanzhou Institute of Chemical Physics
Daoai Wang
Daoai Wang Chinese Academy of Sciences

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