导师风采
0809电子科学与技术

程正旺

  • 学院

    :理学院

  • 导师类别

    :硕士生导师

  • 出生年月

    :198703

  • 职称

    :讲师

  • 学历

    :研究生

  • 学位

    :博士

个人简介:

        2011年本科毕业于华中科技大学,2017年博士毕业于中国科学技术大学,随后在华中科技大学从事博士后研究工作。2019年10月到湖北工业大学理学院工作。主持包括5G领域企业合作项目、中国博士后科学基金、湖北省教育厅中青年人才项目及校人才引进项目等在内的横向、纵向项目多项,参与国家自然科学基金委重大研究计划项目等3项。在Nat. Commun.、Nano Lett.、New J. Phys.、J. Phys. Chem. C等国际高水平期刊发表SCI论文二十余篇,其中高被引1篇,单篇被引最高1000余次。


招生信息

        1.招生学科:电子科学与技术,电子信息

        2.研究方向:芯片设计与材料实现;光电材料与器件

        3.招生年度:2023


科研项目

        1.面向5G领域的薄膜体声波滤波器和xxx若干问题研究——高质量xxx膜的制备与性能提升.企业合作项目,35万,主持. 2021.01-2021.12.

        2.锐钛矿相TiO2(001)缺陷表面的等离激元光催化机理研究.湖北省教育厅,2万,主持. 2020.01-2021.12.

        3.非贵金属等离激元MoO2/TiO2复合纳米材料的制备与光电催化分解水研究.湖北工业大学人才引进项目,4万,主持. 2021.01-2022.12.

        4.THPB分子在SrTiO3表面的吸附、反应及自组装机理研究.中国博士后科学基金会,5万,主持. 2018.09-2019.09.

        5.金属氧化物的界面和表面激子及其与吸附分子的相互作用探测.国家自然科学基金委,300万,参与(5/10). 2015.01-2017.12.

        6.锐钛矿TiO2(001)表面化学活性的微观机理研究.国家自然科学基金委,67万,参与(4/9). 2016.01-2019.12.


成果获奖

        [1]Zhengwang Cheng, Zhilong Hu, Xinguo Ma, Mei Wang, Neng Gan, Minghu Pan. Enhancing the Visible Light Photoelectrochemical Water Splitting of TiO2 Photoanode via a p-n Heterojunction and the Plasmonic Effect.The Journal of Physical Chemistry C 126, 11510-11517 (2022). (JCR一区)

        [2]Zhengwang Cheng, Zhilong Hu, Zhifeng Liu, Changcun Han, Mei Wang, Jing He, Wei Zou, Xinguo Ma. Non-noble plasmonic MoO2 as photosensitizer of 1D TiO2 nanorods for enhancing visible-light photoelectrochemical performance.Surfaces and Interfaces 31, 102082 (2022). (JCR一区)

        [3]Zhengwang Cheng, ZhilongHu, Mei Wang, JingHe, Wei Zou, Shaojian Li, XinguoMa, Fangsen Li, Zhifeng Liu, ZhiqiangMao, Minghu Pan. Searching for a promising topological Dirac nodal-line semimetal by angle resolved photoemission spectroscopy.New Journal of Physics 23, 123026 (2021). (JCR一区)

        [4] Xiaochuan Ma#,Zhengwang Cheng#, Mingyang Tian, Xiaofeng Liu, Xuefeng Cui, Yaobo Huang, Shijing Tan*, Jinlong Yang, and Bing Wang*. Formation of plasmonic polarons in highly electron-doped anatase TiO2.Nano Letters 21, 430−436 (2021). (JCR一区)

        [5]Zhengwang Cheng#, Zongyuan Zhang#, Haigen Sun#, Shaojian Li, Hui Yuan, Zhijun Wang, Yan Cao, Zhibin Shao, Qi Bian, Xin Zhang, Fangsen Li*, Jiagui Feng, Sunan Ding, Zhiqiang Mao, Minghu Pan*. Visualizing dirac nodal-line band structure of topological semimetal ZrGeSe by ARPES.APL Materials 7, 051105 (2019). (JCR一区)

        [6]Zhengwang Cheng#, Haoqi Tang#, Xuefeng Cui*, Shihui Dong, Xiaochuan Ma, Bin Luo, Shijing Tan, Bing Wang*. Identifying the site-dependent photoactivity of anatase TiO2(001)-(1×4) surface.The Journal of Physical Chemistry C 121, 19930 (2017). (JCR一区)

        [7]Zhengwang Cheng#, Lili Zhang#, Shihui Dong, Xiaochuan Ma, Huanxin Ju, Junfa Zhu, Xuefeng Cui*, Jin Zhao*, Bing Wang*. Electronic properties of Cr-N codoped rutile TiO2(110) thin films.Surface Science 666, 84 (2017). (JCR二区)

        [8] Haoqi Tang#,Zhengwang Cheng#, Shihui Dong, Xuefeng Cui*, Hao Feng, Xiaochuan Ma, Bin Luo, Aidi Zhao, Jin Zhao, Bing Wang*. Understanding the intrinsic chemical activity of anatase TiO2(001)-(1×4) surface.The Journal of Physical Chemistry C 121, 1272 (2017). (JCR一区)

        [9] Zongyuan Zhang#, Habakubaho Gedeon#,Zhengwang Cheng#, Chuan Xu, Zhibin Shao, Haigen Sun, Shaojian Li, Yan Cao, Xin Zhang, Qi Bian, Lijun Liu, Zhibo Liu, Hui-Ming Cheng, Wencai Ren*, Minghu Pan*. Layer-stacking, defects and robust superconductivity on Mo-terminated surface of ultrathin Mo2C flakes grown by CVD.Nano Letters 19, 3327 (2019). (JCR一区)

        [10] Haoqi Tang#, Yue Lin#,Zhengwang Cheng#, Xuefeng Cui, Bing Wang*. Direct view of Cr atoms doped in anatase TiO2(001) thin film.Chinese Journal of Chemical Physics 31, 71 (2018). (JCR三区)

        [11] Yang Wang#, Huijuan Sun#, Shijing Tan, Hao Feng,Zhengwang Cheng, Jin Zhao*, Aidi Zhao, Bing Wang*, Yi Luo, Jinlong Yang, J. G. Hou. Role of point defects on the reactivity of reconstructed anatase titanium dioxide (001) Surface.Nature Communications 4: 2214 (2013). (JCR一区)

        备注:“*”表示通讯作者,“#”表示共同第一作者。

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