World's Best Scientists 2026 revealed!

Overview

Jingshen Wu is affiliated with the Hong Kong University of Science and Technology in China. Their research primarily spans the field of engineering, with a strong focus on electrical and electronic engineering, mechanical engineering, mechanics of materials, materials chemistry, and biomaterials.

Their recent publications cover a variety of topics related to materials science and engineering applications. Notable papers include:

  • Integrating coaxial electrospinning and 3D printing technologies for the development of biphasic porous scaffolds enabling spatiotemporal control in tumor ablation and osteochondral regeneration, 2024, Bioactive Materials
  • Rationally designed calcium carbonate multifunctional trap for contaminants adsorption, 2023, The Science of The Total Environment
  • Harmonizing Thickness and Permeability in Bone Tissue Engineering: A Novel Silk Fibroin Membrane Inspired by Spider Silk Dynamics, 2023, Advanced Materials
  • Assessment and prediction of high speed railway bridge long-term deformation based on track geometry inspection big data, 2021, Mechanical Systems and Signal Processing
  • Microfluidic electroless deposition for uniform stacking chip interconnection: Simulation framework and experimental validation, 2022, Chemical Engineering Journal

Their research interests encompass several main topics, including:

  • Silk-based biomaterials and applications
  • Electronic packaging and soldering technologies
  • Metallurgy and material forming
  • Fiber-reinforced polymer composites
  • Adsorption and biosorption for pollutant removal
  • Membrane separation technologies
  • Periodontal regeneration and treatments

Publication venues where Jingshen Wu frequently publishes are:

  • International Journal of Materials and Product Technology
  • SSRN Electronic Journal
  • Advanced Materials
  • arXiv (Cornell University)
  • Bioactive Materials

Collaborations have been established with multiple frequent coauthors, including:

  • Yaofu Tan
  • Peilun Yao
  • Haibin Chen
  • Jinglei Yang
  • Xin Sheng

Best Publications

  • Polypropylene/calcium carbonate nanocomposites

    Chi-Ming Chan;Jingshen Wu;Jiang Li;Ying-Kit Cheung

  • Epoxy Nanocomposites with Highly Exfoliated Clay: Mechanical Properties and Fracture Mechanisms

    Ke Wang;Ling Chen;Jingshen Wu;Mei Ling Toh

  • High impact strength epoxy nanocomposites with natural nanotubes

    Yueping Ye;Haibin Chen;Jingshen Wu;Lin Ye

  • Fracture toughness of α- and β-phase polypropylene homopolymers and random- and block-copolymers

    Haibin Chen;J. Karger-Kocsis;Jingshen Wu;József Varga

  • Toughening epoxies with halloysite nanotubes

    Shiqiang Deng;Jianing Zhang;Lin Ye;Lin Ye;Jingshen Wu

  • The essential fracture work concept for toughness measurement of ductile polymers

    Jingshen Wu;Yiu-Wing Mai

  • Effect of fiber pretreatment condition on the interfacial strength and mechanical properties of wood fiber/PP composites

    Jingshen Wu;Demei Yu;Demei Yu;Chi Ming Chan;Jang Kyo Kim

  • Strain monitoring in FRP laminates and concrete beams using FBG sensors

    Kin-tak Lau;Libo Yuan;Li-min Zhou;Jingshen Wu

  • High Impact Toughness Polypropylene/CaCO3 Nanocomposites and the Toughening Mechanism

    Yong Lin;Haibin Chen;Chi-Ming Chan;Jingshen Wu

  • Characterizations of expanded graphite/polymer composites prepared by in situ polymerization

    Genhua Zheng;Jingshen Wu;Jingshen Wu;Wenping Wang;Caiyuan Pan

  • Fracture toughness and fracture mechanisms of PBT/PC/IM blend

    Jingshen Wu;Yin Wing Mai;Brian Cotterell

  • Nanoscale characterisation of interphase in silane treated glass fibre composites

    Jang Kyo Kim;Man Lung Sham;Jingshen Wu

  • Preparation of highly exfoliated epoxy/clay nanocomposites by "slurry compounding": process and mechanisms.

    Ke Wang;Lei Wang;Jingshen Wu;Ling Chen

  • Mechanical properties of wood flake–polyethylene composites. II. Interface modification

    P. W. Balasuriya;L. Ye;Y.-W. Mai;J. Wu

  • The dielectric and mechanical properties of a potassium-titanate-whisker-reinforced PP/PA blend

    Demei Yu;Demei Yu;Jingshen Wu;Li Min Zhou;Darong Xie

  • Mechanical properties and toughening mechanisms of polypropylene/barium sulfate composites

    Ke Wang;Ke Wang;Ke Wang;Jingshen Wu;Lin Ye;Hanmin Zeng

  • The toughening mechanism of polypropylene/calcium carbonate nanocomposites

    Yong Lin;Haibin Chen;Chi-Ming Chan;Jingshen Wu

  • Healing of impact damage in woven glass fabric reinforced epoxy composites

    Tao Yin;Min Zhi Rong;Jingshen Wu;Haibin Chen

  • Effective activation of halloysite nanotubes by piranha solution for amine modification via silane coupling chemistry

    Pan Sun;Guoming Liu;Dong Lv;Xia Dong

  • Polypropylene/calcium carbonate nanocomposites

    Yong Li;Chi Ming Chan;Jingshen Wu

Frequent Co-Authors

Chi Ming Chan
Chi Ming Chan Hong Kong University of Science and Technology
Yiu-Wing Mai
Yiu-Wing Mai Hong Kong Polytechnic University
Lin Ye
Lin Ye Southern University of Science and Technology
Jang Kyo Kim
Jang Kyo Kim University of New South Wales
Ming-Bo Yang
Ming-Bo Yang Sichuan University
Chaobin He
Chaobin He National University of Singapore
Albert F. Yee
Albert F. Yee University of California, Irvine
Limin Zhou
Limin Zhou Southern University of Science and Technology
Jinglei Yang
Jinglei Yang Hong Kong University of Science and Technology
József Karger-Kocsis
József Karger-Kocsis Budapest University of Technology and Economics

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