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    柯聪明

    • 讲师(高校)
    • 性别:男
    • 学历:博士研究生
    • 学位:理学博士学位
    • 入职时间:2021-07-23
    • 所在单位:机电学院/制造工程研究院
    • 办公地点:综合实验大楼A314
    • 电子邮箱:
    • 在职信息:在岗
    • 职务:教工第五党支部副书记
    • 学科:机械制造及其自动化

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    个人简介

    柯聪明,博士,讲师,2021年博士毕业于厦门大学凝聚态物理专业,长期从事脆性材料超精密磨抛技术、新型薄膜电子器件技术研究,主持国家自然科学基金青年项目、福建省自然科学基金面上项目等多项科研项目、参与国家自然科学基金面上项目、厦门市重大专项等多项科研项目。在Advanced Science、Applied Surface Science、Ceramics International、Physical Review Applied、Surfaces and Interfaces等国际知名期刊发表学术论文30余篇,授权专利12项。指导本科生/研究生参加“互联网+”、“云说新科技”等各类科创竞赛,获国赛铜奖和银奖各1项。现为中国机械工程学会高级会员、福建省机械工程学会会员、厦门市光电材料加工重点实验室秘书。欢迎对脆性材料加工制造技术感兴趣的同学加入!

    教育经历

    [1] 2012.9 -- 2016.7
    厦门大学       物理学       大学本科

    [2] 2016.9 -- 2021.7
    厦门大学       凝聚态物理       博士研究生

    论文成果

  • [1]【一作/通讯SCI2区TOP】Mechanism of glycine and H2O action in tribochemical mechanical polishing of single-crystal gallium nitride substrate.Applied Surface Science,2024,678

  • [2]【一作2区TOP】Synergistic effect of abrasive friction and glycine on improving chemical mechanical polishing performance of single-crystal GaN substrate.Ceramics International,2024,50

  • [3]【一作SCI2区】Investigation on the effect of chemical mechanical polishing sapphire substrate on chemical vapor deposition growth of two-dimensional MoS2.Surfaces and Interfaces,2024,48

  • [4]【一作/通讯SCI3区】Micro-mechanism of glycine action in tribochemical mechanical polishing of single-crystal sapphire substrate: Experimental and first-principles analysis.Materials Today Communications,2024,41

  • [5]【一作/通讯SCI3区】Manipulating the electronic and spintronic properties in PtS2/MoTe2 heterostructure with strain.Chemical Physics Letters,2024,856

  • [6]【一作SCI3区】Controlling the resistive switching polarity in ReS2 lateral memristors through the modulation of crystal structures.Applied Physics Express,2023,16

  • [7]【一作SCI2区TOP】Large and controllable spin-valley splitting in two-dimensional WS2/h-VN heterostructure.Physical Review B,2019,100

  • [8]【一作SCI2区TOP】Tuning the electronic, optical, and magnetic properties of monolayer GaSe with a vertical electric field.Physical Review Applied,2018,9

  • [9]【二作SCI1区TOP】Controllable Resistive Switching in ReS2/WS2 Heterostructure for Nonvolatile Memory and Synaptic Simulation.Advanced Science,2023,10

  • [10]【三作SCI1区TOP】Review of Anisotropic 2D Materials: Controlled Growth, Optical Anisotropy Modulation, and Photonic Applications.Laser & Photonics Reviews,2021,15

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