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校训:立德树人,兼济天下
杨贵

杨贵,男,1995年生,工学博士,昆明理工大学高层次引进人才,校聘教授,硕士研究生导师。20221月,赴新加坡南洋理工大学(Nanyang Technological University)进行为期一年的国外访学;20236月,获得中国地质大学(武汉)材料科学与工程博士学位。2018年以来,发表学术论文40余篇,其中SCI一作和通讯11篇。

所属科研团队/平台

水环境污染防治创新团队 课题组主页:http://www.pansgroup.kust.edu.cn/

教育与工作经历

20238-至今  昆明理工大学环境科学与工程学院,讲师(校聘教授)

20179-20236月,中国地质大学(武汉),工学博士

20221-20231月,新加坡南洋理工大学,博士联合培养

20139-20176月,中国地质大学(武汉),工学学士

主持(参与)科研项目

  1. 昆明理工大学高层次人才引进经费(四层次),150万元,2023/03-2031/08,主持;

  2. 国家留学基金委公派出国项目,202106410107Construction of bismuth molybdate (BixMoyOz) based photocatalytic material and study on its performance mechanism for degradation of typical antibiotics in water2022/01-2023/0113.46万元,已结题,主持;

  3. 国家科技重大专项项目,白洋淀与大清河流域(雄安新区)水生态环境整治与水安全保障关键技术研究与示范,2018ZX07110150万,2019.06-2022.06,已结题,参与人员;

  4. 国家自然科学基金面上项目,单相多色硅、磷酸盐荧光材料基质结构与发光特性的调控研究,215711680万元,2018.09-2023.29,在研参与;

  5. 广东省部产学研项目,新型高效稀土系LED用多色发光材料的研制及产业化项目,2012B09110047430万元,已结题。2019.01-2022.01,参与人员。

    代表性学术论文

    [1] G. Yang, Y.J. Liang*, H. Zheng, J. Yang, S. Guo, H.G. Yu*, A self-circulating cerium-rich CeO2-x/Bi2MoO6 heterojunction catalyst for boosting photo-Fenton degradation of fluoroquinolone antibiotics, Sep. Purif. Technol., 3095 (2023) 123084.

    [2] G. Yang, Y.J. Liang*, H. Zheng, X.R. Zhang, J. Jia, Fe-polyoxometalate nanodots decorated Bi2MoO6 nanosheets with dominant {010} facets for photo-Fenton degradation of antibiotics over a wide pH range: mechanism insight and toxicity assessment, Sep. Purif. Technol., 310 (2023) 123167.

    [3] G. Yang, Y.J. Liang*, J. Yang, X.R. Zhang, Z.K. Zeng, Z.R. Xiong, J. Jia, K. Sa, Fe-heteropolyoxometalate nanodots modified dominant {001} facet Bi4TaO8Cl nanosheets with oxygen vacancies for enhanced photocatalytic-Fenton degradation of fluoroquinolone antibiotics. J. Environ. Chem. Eng., 11 (2023) 109328.

    [4] G. Yang, Y.J. Liang*, K. Wang, J. Yang, Z.K. Zeng, R. Xu, X.J. Xie*, Simultaneous introduction of 0D Bi nanodots and oxygen vacancies onto 1D Bi6Mo2O15 sub-microwires for synergistically enhanced photocatalysis, Chem. Eng. J., 409 (2021) 129098.

    [5] G. Yang, Y.J. Liang*, Z.R. Xiong, J. Yang, K. Wang, Z.K. Zeng, Molten salt-assisted synthesis of Ce4O7/Bi4MoO9 heterojunction photocatalysts for photo-Fenton degradation of tetracycline: Enhanced mechanism, degradation pathway and products toxicity assessment, Chem. Eng. J., 425 (2021) 130689.

    [6] G. Yang, Y.A. Zhu, Y.J. Liang*, J. Yang, K. Wang, R. Xu, Z.K. Zeng, X.J. Xie*, Crystal defect-mediated {010} facets of Bi2MoO6 nanosheets for removal of TC: Enhanced mechanism and degradation pathway, Appl. Surf. Sci., 539 (2021) 148038.

    [7] G. Yang, Y.J. Liang and J. Yang, K. Wang, Z.K. Zeng, Z.R. Xiong, A BiOBr/Bi4MoO9 edge-on heterostructure with fast electron transport for efficient photocatalytic activity, Dalton Trans., 50 (2021) 16488.

    [8] G. Yang, Y.J. Liang and J. Yang, K. Wang, Z.K. Zeng, Z.R. Xiong, Supporting ultrathin “fish scale-like” BiOBr nanosheets on Bi6Mo2O15 sub-microwires for boosting photocatalytic performance, CrystEngComm., 23 (2021) 7720-7724.

    [9] G. Yang, Y.J. Liang*, K. Li, J. Yang, K. Wang, R. Xu, X.J. Xie*, Adjustment of dimension and structure of Bismuth molybdate photocatalysts via a molten salt-assisted assembly system: From Aurivillius-type to Fluorite-type, J. Alloys Compd., 844 (2020) 156231.

    [10] G. Yang, Y.J. Liang*, K. Li, J. Yang, R. Xu, X.J. Xie*, Construction of a Ce3+ doped CeO2/Bi2MoO6 heterojunction with a mutual component activation system for highly enhancing the visible-light photocatalytic activity for removal of TC or Cr (VI), Inorg. Chem. Front., 6 (2019) 1507-1517.

    [11] G. Yang, Y.J. Liang*, K. Li, J. Yang, Y.L. Zhu, S.Q. Liu, R. Xu, Comparative study on the synthesis and photocatalytic performance of Bi2WO6 nanosheets prepared via molten salt and hydrothermal method, J. Mater. Sci. Mater. Electron., 29 (2018) 14311-14321.

    研究方向及兴趣

  • 半导体纳米功能材料的可控制备

  • 新型光催化协同其他高级氧化技术处理新污染物性能和机理

  • 新污染物降解过程中潜在生态毒性风险评价

    招生要求

  • 上进心强、工作扎实、积极乐观,有团队协作精神

  • 具有环境、材料、化工专业背景均可

    联系方式

  • 办公室:环境楼A104

  • E-mailguiyang@kust.edu.cn

  • QQ1984692855

 
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