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朱剑豪
2023-05-15 19:34
  • 朱剑豪
  • 朱剑豪 - 朱剑豪-香港城市大学-物理系-个人资料

近期热点

资料介绍

个人简历


Paul K Chu was born in Hong Kong and attended both primary and secondary school at St. Joseph's Anglo-Chinese School. He enrolled in the honors program at The Ohio State University in Columbus, Ohio and won the Summa Award, The Arts and Sciences Award, as well as the prestigious American Chemical Society (ACS) Student Fellowship to work at New England Aquarium in Boston, Massachusetts on trace metal analysis of sea water during the summer of 1976. He received his BS in mathematics (Cum Laude and Phi Kappa Phi) from Ohio State in 1977 and attended graduate school at Cornell University in Ithaca, New York. He won the DuPont teaching award as a teaching assistant at Cornell in 1978 and joined the research group of Prof. George H Morrison of the Department of Chemistry. Prof. Morrison was one of the prominent figures in analytical chemistry having been involved with the Apollo moon expedition program. Prof. Morrison was a winner of the ACS Analytical Chemistry Award and Editor-in-Chief of Analytical Chemistry, the premier journal in analytical chemistry published by the American Chemical Society. Under the supervision of Prof. Morrison and Prof. James W Mayer of the Department of Materials Science & Engineering, Paul conducted research on ion beam processing and characterization of semiconductors and received his MS and PhD in chemistry in 1979 and 1982, respectively.

研究领域


"""""Plasma Science and Engineering\r
Surface Science and Engineering\r
Biomedical

近期论文


G. J. Huang, Q. Chen, W. T. Wu, J. W. Wang, P. K. Chu, H. Z. Bai, and G. P. Tang, “Reconstructed Chitosan with Alkylamine for Enhanced Gene Delivery by Promoting Endosomal Escape”, Carbohydrate Polymers, vol. 227, pp. 115339-1 – 115339-11 (2020).\r
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X. F. Wei, H. G. Feng, L. W. Li, J. B. Gong, K. Jiang, S. L. Xue, and P. K. Chu, “Synthesis of Tetragonal Prismatic γ-In2Se3 Nanostructures with Predominantly {110} Facets and Photocatalytic Degradation of Tetracycline”, Applied Catalysis B: Environmental, vol. 260, pp. 118218-1 – 118218-9 (2020).\r
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A. R. Simbar, A. Shanaghi, H. Moradi, and P. K. Chu, “Corrosion Behavior of Functionally Graded and Sself-Healing Nanostructured TiO2 - Al2O3 - Benzotriazole Coatings Deposited on AA 2024-T3 by the Sol-Gel Method”, Materials Chemistry and Physics, vol. 240, pp. 122233-1 – 122233-9 (2020).\r
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X. Y. Zhang, G. N. Zhang, H. Y. Zhang, X. P. Liu, J. Shi, H. X. Shi, X. H. Yao, P. K. Chu, and X. Y. Zhang, “A Bifunctional Hydrogel Incorporated with CuS@MoS2 Microspheres for Disinfection and Improved Wound Healing”, Chemical Engineering Journal, vol. 382, pp. 122849-1 – 122849-16 (2020).\r
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Y. Luo, Y. H. Wu, C. Huang, L. Z. Zhang, D. Z. Xiao, S. H. Ma, S. L. Zheng, and P. K. Chu, “Graphite Felt Incorporated with MoS2/rGO for Electrochemical Eetoxification of High-Arsenic Fly Ash”, Chemical Engineering Journal, vol. 382, pp. 122763-1 – 122763-12 (2020).\r
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P. H. Li, F. Long, W. L. Chen, J. Chen, P. K. Chu, and H. Y. Wang, “Fundamentals and Applications of Surface-Enhanced Raman Spectroscopy (SERS) – Based Biosensors”, Current Opinion in Biomedical Engineering, vol. 13, pp. 51 – 59 (2020).\r
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J. Xu, B. Gao, K. F. Huo, and P. K. Chu, “Recent Progress in Electrode Materials for Nonaqueous Lithium Ion Capacitors”, Journal of Nanoscience and Nanotechnology, vol. 20, no. 5, pp. 2652 – 2667 (2020). (High-Resolution pdf)\r
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P. Qin, C. Huang, B. Gao, C. R. Pi, J. J. Fu, X. M. Zhang, K. F. Huo, and P. K. Chu, “Ultrathin Carbon Layer - Encapsulated TiN Nanotubes Array with Enhanced Capacitance and Electrochemical Stability for Supercapacitors”, Applied Surface Science, vol. 503, pp. 144293-1 – 144293-7 (2020).\r
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L. Y. Shi, S. H. Xu, D. Y. Xiong, L. W. Wang, P. X. Yang, and P. K. Chu, “Analysis of Defect States in Optical Microcavities Based on the Photonic Quantum Well Structure”, Optics Communications, vol. 458, pp. 124880-1 – 124880-8 (2020).\r
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Y. Zheng, X. X. Li, C. R. Pi, H. Song, B. Gao, P. K Chu, and K. F. Huo, “Recent Advances of Two-Dimensional Transition Metal Nitrides for Energy Storage and Conversion Applications”, FlatChem, vol. 19, pp. 100149-1 – 100149-17 (2020).\r
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C. R. Pi, C. Huang, Y. X. Yang, H. Song, X. M. Zhang, Y. Zheng, B. Gao, J. J. Fu, P. K. Chu, and Kaifu Huo, “In Situ Formation of N-Doped Carbon-Coated Porous MoP Nanowires: A Highly Efficient Electrocatalyst for Hydrogen Evolution Reaction in a Wide pH Range”, Applied Catalysis B: Environmental, vol. 263, pp. 118358-1 – 118358-7 (2020).\r
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G. N. Zhang, X. Y. Zhang, Y. Q. Yang, R. F. Chi, J. Shi, R. Q. Hang, X. B. Huang, X. H. Yao, P. K. Chu, and X. Y. Zhang, “Dual Light-Induced in situ Antibacterial Activities of Biocompatible TiO2/MoS2/PDA/RGD Nanorod Arrays on Titanium”, Biomaterials Science, vol. 8, no. 1, pp. 391 – 404 (2020).\r
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J. N. Fu, X. M. Liu, L. Tan, Z. D. Cui, Y. Q. Liang, Z. Y. Li, S. L. Zhu, Y. F. Zheng, K. W. K. Yeung, P. K. Chu, and S. L. Wu, “Modulation of the Mechanosensing of Mesenchymal Stem Cells by Laser-Induced Patterning for the Acceleration of Tissue Reconstruction through the Wnt/β-Catenin Signaling Pathway Activation”, Acta Biomaterialia, vol. 101, pp. 152 – 167 (2020).\r
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A. Shanaghi, A. R. Souri, and P. K. Chu, “EIS and Noise Study of Zirconia-Alumina-Benzotriazole Nano-Composite Coating Applied on Al2024 by the Sol-Gel Method”, Journal of Alloys and Compounds, vol. 816, pp. 152662-1 – 152662-12 (2020).\r
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R. Yang, J. Q. Yuan, C. H. Yu, K. Yan, Y. Fu, H. Q. Xie, J. Chen, P. K. Chu, and X. L. Wu, “Efficient Electromagnetic Wave Absorption by SiC/Ni/NiO/C Nanocomposites”, Journal of Alloys and Compounds, vol. 816, pp. 152519-1 – 152519-10 (2020).\r
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A. Gao, Q. Liao, L. X. Xie, G. M. Wang, W. Zhang, Y. Z. Wu, P. H. Li, M. Guan, H. B. Pan, L. P. Tong, P. K. Chu, and H. Y. Wang, “Tuning the Surface Immunomodulatory Functions of Polyetheretherketone for Enhanced Osseointegration”, Biomaterials, vol. 230, pp. 119642-1 – 119642-13 (2020).\r
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C. Huang, B. Zhang, Y. Luo, D. Z. Xiao, K. W. Tang, Q. D. Ruan, Y. X. Yang, B. Gao, and P. K. Chu, “A Hybrid Co NPs@CNT Nanocomposite as Highly Efficient Electrocatalyst for Oxygen Evolution Reaction”, Applied Surface Science, vol. 507, pp. 145155-1 – 145155-6 (2020).\r
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H. Huang, M. Gao, Y. H. Kang, J. Li, J. H. Wang, L. Wu, P. K. Chu, Y. F. Huang, M. R. Ibarra. and X.-F. Yu, “Rapid and Scalable Production of High-Quality Phosphorene by Plasma-Liquid Technology”, Chemical Communications, vol. 56, no. 2, pp. 221 – 224 (2020).\r
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S. H. Cui, Z. Z. Wu, S. Xiao, B. C. Zheng, L. Chen, T. J. Li, R. K. Y. Fu, P. K. Chu, X. B. Tian, W. C. Tan, D. M. Fang, and F. Pan, “Nano-Second Temporal Particle Behaviour in High-Power Impulse Magnetron Sputtering Discharge in a Cylindrical Cathode”, Journal of Applied Physis, vol. 127, no. 2, pp. 023301-1 – 023301-13 (2020).\r
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Q. Huang, L. L. Liu, Z. Z. Wu, S. P. Ji, H. Wu, P. H. Chen, Z. Y. Ma, Z. C. Wu, R. K. Y. Fu, H. Lin, X. B. Tian, F. Pan, and P. K. Chu, “Corrosion-Resistant Plasma Electrolytic Oxidation Coating Modified by Zinc Phosphate and Self-Healing Mechanism in the Salt-Spray Environment”, Surface and Coatings Technology, vol. 384, pp. 125321-1 – 125321-11 (2020).

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