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Materials Science

D-Index
45
Citations
6074
World Ranking
11867
National Ranking
3269

Overview

C.Y. Chung is affiliated with the City University of Hong Kong in China. Their research spans multiple domains within engineering and computer science, with a specific focus on electrical and electronic engineering and artificial intelligence. Chung's work encompasses advanced materials and technology development for energy storage, as well as computational methods and algorithms applied to various scientific challenges.

The scientist's recent publications illustrate a strong emphasis on battery materials and solid-state lithium metal batteries. Notable papers include:

  • "(Oxalato)borate: The key ingredient for polyethylene oxide based composite electrolyte to achieve ultra-stable performance of high voltage solid-state LiNi0.8Co0.1Mn0.1O2/lithium metal battery" (2020, Nano Energy)
  • "Ring-Opening Polymerization Reconfigures Polyacrylonitrile Network for Ultra Stable Solid-State Lithium Metal Batteries" (2024, Advanced Energy Materials)
  • "Percutaneous Ultrasound Gastrostomy: First-in-Human Experience with the PUMA-G System" (2020, Journal of Vascular and Interventional Radiology)
  • "Percutaneous ultrasound gastrostomy (PUG): first prospective clinical trial" (2021, Abdominal Radiology)
  • "Power System Reliability Evaluation Based on Sequential Monte Carlo Simulation Considering Multiple Failure Modes of Components" (2024, Journal of Modern Power Systems and Clean Energy)

Chung's research interests include the following main topics:

  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials
  • Handwritten Text Recognition Techniques
  • Natural Language Processing Techniques
  • Clinical Nutrition and Gastroenterology
  • Reinforcement Learning in Robotics
  • Advanced Bandit Algorithms Research

Their frequent coauthors highlight collaboration across interdisciplinary teams and include:

  • Samson Ho-Sum Cheng
  • Sasan Ghashghaie
  • Hafiz Khurram Shahzad
  • Han Liu
  • Derek W. Cool

Chung's work has been published in a variety of venues, emphasizing breadth and interdisciplinary engagement:

  • arXiv (Cornell University)
  • CHEST Journal
  • Nano Energy
  • Advanced Energy Materials
  • Journal of Modern Power Systems and Clean Energy

The primary fields of study for Chung are:

  • Engineering
  • Computer Science

Subfields of their scholarly focus include:

  • Electrical and Electronic Engineering
  • Artificial Intelligence
  • Computer Vision and Pattern Recognition
  • Management Science and Operations Research
  • Nutrition and Dietetics

Best Publications

  • Fabrication of porous NiTi shape memory alloy for hard tissue implants by combustion synthesis

    C.L Chu;C.Y Chung;P.H Lin;S.D Wang

  • A facile method to improve the high rate capability of Co3O4 nanowire array electrodes

    Hua Cheng;Hua Cheng;Zhou Guang Lu;Zhou Guang Lu;Jian Qiu Deng;C. Y. Chung

  • Carbon plasma immersion ion implantation of nickel-titanium shape memory alloys.

    R.W.Y. Poon;K.W.K. Yeung;X.Y. Liu;P.K. Chu

  • Electrochemical performance of all-solid-state lithium batteries using inorganic lithium garnets particulate reinforced PEO/LiClO4 electrolyte

    Samson Ho-Sum Cheng;Kang-Qiang He;Kang-Qiang He;Ying Liu;Jun-Wei Zha;Jun-Wei Zha

  • A biomimetic hierarchical scaffold: natural growth of nanotitanates on three-dimensional microporous Ti-based metals.

    Shuilin Wu;Xiangmei Liu;Tao Hu;Paul K. Chu

  • Microstructure and martensitic transformation behavior of porous NiTi shape memory alloy prepared by hot isostatic pressing processing

    B. Yuan;C.Y. Chung;M. Zhu

  • Facile synthesis of porous LiMn2O4 spheres as positive electrode for high-power lithium ion batteries

    Liu Jiang Xi;Hong-En Wang;Zhou Guang Lu;Zhou Guang Lu;Shi Liu Yang

  • Pore formation mechanism and characterization of porous NiTi shape memory alloys synthesized by capsule-free hot isostatic pressing

    Shuilin Wu;C.Y. Chung;Xiangmei Liu;Paul K. Chu

  • Facile synthesis of spinel CuCo2O4 nanocrystals as high-performance cathode catalysts for rechargeable Li–air batteries

    Ying Liu;Lu-Jie Cao;Chen-Wei Cao;Man Wang

  • Optimization of thermal treatment parameters to alter austenitic phase transition temperature of NiTi alloy for medical implant

    K.W.K. Yeung;K.M.C. Cheung;W.W. Lu;C.Y. Chung

  • Surface structure and properties of biomedical NiTi shape memory alloy after Fenton's oxidation.

    C.L. Chu;T. Hu;S.L. Wu;Y.S. Dong

  • Pulsed Laser Deposition and Electrochemical Characterization of LiFePO4-Ag Composite Thin Films**

    Zhouguang Lu;Zhouguang Lu;Hua Cheng;Mingfei Lo;C. Y. Chung

  • Surface mechanical properties, corrosion resistance, and cytocompatibility of nitrogen plasma-implanted nickel–titanium alloys: A comparative study with commonly used medical grade materials

    K.W.K. Yeung;R.W.Y. Poon;P.K. Chu;C.Y. Chung

  • Surface nano-architectures and their effects on the mechanical properties and corrosion behavior of Ti-based orthopedic implants

    Shuilin Wu;Shuilin Wu;Xiangmei Liu;Kelvin W.K. Yeung;Huan Guo

  • Surface oxidation of NiTi shape memory alloy in a boiling aqueous solution containing hydrogen peroxide

    C.L. Chu;C.Y. Chung;P.K. Chu

  • Facile synthesis and electrochemical characterization of porous and dense TiO2 nanospheres for lithium-ion battery applications

    Hong-En Wang;Hua Cheng;Hua Cheng;Chaoping Liu;Xue Chen

  • Hydriding kinetics of nano-phase composite hydrogen storage alloys prepared by mechanical alloying of Mg and MmNi5−x(CoAlMn)x

    M Zhu;Y Gao;X.Z Che;Y.Q Yang

  • Corrosion resistance, surface mechanical properties, and cytocompatibility of plasma immersion ion implantation–treated nickel‐titanium shape memory alloys

    K. W. K. Yeung;R. W. Y. Poon;X. Y. Liu;J. P. Y. Ho

  • (Oxalato)borate: The key ingredient for polyethylene oxide based composite electrolyte to achieve ultra-stable performance of high voltage solid-state LiNi0.8Co0.1Mn0.1O2/lithium metal battery

    Samson Ho-Sum Cheng;Chen Liu;Fangyan Zhu;Liang Zhao

  • Biomedical Porous Shape Memory Alloys for Hard-Tissue Replacement Materials

    Bin Yuan;Min Zhu;Chi Yuen Chung

  • Phase transformation behavior of porous NiTi alloys fabricated by capsule-free hot isostatic pressing

    S.L. Wu;X.M. Liu;P.K. Chu;C.Y. Chung

  • Surface XPS characterization of NiTi shape memory alloy after advanced oxidation processes in UV/H2O2 photocatalytic system

    R.M. Wang;C.L. Chu;T. Hu;Y.S. Dong

Frequent Co-Authors

Paul K. Chu
Paul K. Chu City University of Hong Kong
Kelvin W.K. Yeung
Kelvin W.K. Yeung University of Hong Kong
William W. Lu
William W. Lu University of Hong Kong
Keith D. K. Luk
Keith D. K. Luk University of Hong Kong
Shuilin Wu
Shuilin Wu Peking University
Xuanyong Liu
Xuanyong Liu Chinese Academy of Sciences
Daniel W. Chan
Daniel W. Chan Johns Hopkins University School of Medicine
Tao Hu
Tao Hu Chinese Academy of Sciences
Yufeng Zheng
Yufeng Zheng Peking University
Sie Chin Tjong
Sie Chin Tjong City University of Hong Kong

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