
姓名:杨光明
职称:教授
导师:硕导
专业:分析化学
研究方向:环境分析/电化学传感器
n 教育经历
2012.09-2015.06 武汉大学 分析化学 研究生/博士
2006.09-2009.07 云南师范大学 分析化学 研究生/硕士
2002.09-2006.07 云南师范大学 化学 本科/学士
n 工作经历
2021.04-至今 红河学院化学与资源工程学院 教授/副院长
2018.07-2021.04 红河学院理学院 教授/副院长
2017.11-2018.07 红河学院理学院化学系 教授/化学系主任
2016.01-2017.10 红河学院理学院化学系 副教授(2016年8月任化学系主任)
2012.08-2015.12 保山学院资源环境学院 副教授(2012年8月破格)
2011.11-2012.08 保山学院资源环境学院 讲师
2009.07-2011.11 保山学院资源环境学院 助教
n 教学
分析化学(云南省一流课程)、仪器分析、化学设计实验
n 奖励与荣誉
新型纳米电化学传感界面的构建及其应用(云南省自然科学奖三等奖),2022.05,云南省人民政府
云南省中青年学术带头人,2022.11,云南省人民政府
云南省万人计划“青年拔尖人才”,2019.10,云南省人才领导工作小组办公室
“红河奔腾”高层次人才,2023.12,红河州人才领导小组办公室
云南省级环境影响评价技术审查专家,2024.08,云南生态环境厅
云南省高校教学创新大赛正高组三等奖,2024.05,云南省教育厅
云南省一流课程分析化学,2024.05,云南省教育厅
云南省优秀辅导员,2011.10,云南省教育厅
n 研究项目
云南省绿色食品中越双边国际联合实验室,2023.04-2026.04,项目主持人
云南省高校地方特色食品、消费品研发及质量安全工程研究中心,2018.09-2021.09,项目主持人
新型离子液体功能化的固相微萃取涂层的制备及在环境有机污染物分析中的应用研究,云南省地方高校联合基金-重点项目,202201-202512,项目主持人
基于于离子液体构建新型的纳米载体@多孔分子印迹聚合物的研究及其在电化学检测痕量环境激素中的应用,国家自然科学基金-地区科学基金项目,201701-202012,项目主持人
n 代表性成果
[1] Ting Liang; Min Luo; Ling Shi*; Hongping Yang; Guangming Yang*; Electrochemical preparation of polypyrrole-molybdenum disulfide-graphene nanocomposite coating for the determination of phenols, Talanta Open, 2025, 11400.
[2] 杨光明; 石玲 ; 表面分子印迹聚合物电化学传感器的制备及应用, 吉林大学出版社, 2024 (学术专著).
[3] Guangming Yang, Faqiong Zhao*. Electrochemical sensor for chloramphenicol based on novel multiwalled carbon nanotubes@ molecularly imprinted polymer. Biosensors and Bioelectronics, 2015, 64: 416-422
[4] Guangming Yang, Faqiong Zhao*, Baizhao Zeng. Electrochemical determination of cefotaxime based on a three-dimensional molecularly imprinted film sensor. Biosensors and Bioelectronics, 2014, 53: 447-452.
[5] Guangming Yang, Faqiong Zhao*. Electrochemical sensor for dimetridazole based on novel gold nanoparticles@ molecularly imprinted polymer. Sensors and Actuators B: Chemical, 2015, 220: 1017-1022
[6] Guangming Yang, Faqiong Zhao*.Molecularly imprinted polymer grown on multiwalled carbon nanotube surface for the sensitive electrochemical determination of amoxicillin. Electrochimica Acta, 2015, 174: 33-40.
[7] Guangming Yang, Faqiong Zhao*. A novel electrochemical sensor for the determination of lidocaine based on surface-imprinting on porous three-dimensional film. Journal of Materials Chemistry C, 2014, 2(47): 10201-10208.
[8] Guangming Yang, Faqiong*, Baizhao Zeng. Magnetic entrapment for fast and sensitive determination of metronidazole with a novel magnet-controlled glassy carbon electrode. Electrochimica Acta, 2014, 135: 154-160.
[9] Guangming Yang, Faqiong*, Baizhao Zeng. Facile fabrication of a novel anisotropic gold nanoparticle–chitosan–ionic liquid/graphene modified electrode for the determination of theophylline and caffeine[J]. Talanta, 2014, 127: 116-122.
[10] Guangming Yang*, Ling Li, Jinghe Jiang, Yunhui Yang*. Direct electrodeposition of gold nanotube arrays of rough and porous wall by cyclic voltammetry and its applications of simultaneous determination of ascorbic acid and uric acid. Materials Science and Engineering: C, 2012, 32(6): 1323-1330.
[11] Guangming Yang, Xueying Yang, Canyu Yang, Yunhui Yang*. A reagentless amperometric immunosensor for human chorionic gonadotrophin based on a gold nanotube arrays electrode. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2011, 389(1): 195-200.
[12] Guangming Yang, Yaqian Chen, Ling Li, Yunhui Yang*. Direct electrochemical determination of morphine on a novel gold nanotube arrays electrode. Clinica Chimica Acta, 2011, 412(17): 1544-1549.
[13] GuangmingYang*, Xianlan Chenn, Qingshan Pan, Wei Liu, FaqiongZhao*. A novel photoelectrochemical sensor for thiamphenicol based on porous three-dimensional imprinted film, International Journal of Electrochemical Science, 2017, 12(8):7272-7286
[14] Ling Shi, Zefeng Wang, Guangming Yang*, Hongping Yang, Faqiong Zhao*. A novel electrochemical immunosensor for aflatoxin B1 based on Au nanoparticles-poly 4-aminobenzoic acid supported graphene, AppliedSurface Science, 2020, 527:0-146934.
[15] Aiping Fan, Guangming Yang*, Hongping Yang, Faqiong Zhao*. Synthesis and application of dendritic Pt-Pd bimetallic nanoparticles in imprinted electrochemical sensor for the determination of florfenicol, Materials Today Communications, 2020, 25:0-101448
[16] Aiping Fan, Ling Shi, Hongping Yang, Guangming Yang*. A Novel electrochemical impedance immunosensor for aflatoxin b1 based on l-cysteine self-assembled on au nanoparticles-porous nitrogen doped graphene modified electrode, International Journal of Electrochemical Science, 2020,15(10) 9669-9682.
[17] Ling Shi, Zefeng Wang*, Lae Bai, Guangming Yang*. Preparation of 3D Nanoflower-like ZnO/graphene Oxide decorated with Bimetallic Nanoparticles for Electrochemical Determination of Doxorubicin Hydrochloride, International Journal of Electrochemical Science,2022,17:: 220144.
[18] Ling Shi, Jie Duan, Shufang Xu, Hongping Yang, Guangming Yang*. One-step synthesis of ultrasmall platinum nanoparticles supported on amino-functionalized graphene to create an electrochemical molecularly imprinted polymer sensor for fluxapyroxad.. International Journal of Electrochemical Science, 2021, 16(7):210767.
[19] Shi Ling, Zefeng Wang, Guangming Yang*, HongpingYang. A novel electrochemical sensor for the determination of aflatoxin B-1 based on polymerized 4-Amino-7-azaindole-nitrogen-doped graphene, International Journal of Electrochemical Science, 2020, 15(11): 11092-11101.
[20] Shi, Ling; Wang, ZeFeng*; Wu, Na; Gou, Gao-Zhang; Chen, Xian-Lan; Yang, Guang-Ming*; Liu, Wei*; One-pot Synthesis of N-doped Reduced Graphene Oxide Decorated with Au-Pd@Au Alloy Nanodendrites for Electrochemical Detection of Chrysophanol, International Journal of Electrochemical Science, 2020, 15(5):3660-3671
[21] Shi, Ling; Wang, Zefeng*; Wu, Na; Chen, Xianlan; Yang, Guangming*; Liu, Wei*; A Facile Strategy for Electrochemical Analysis of Chrysophanol Based on Nitrogen-Doped Graphene Supported ZnO Nanorods/Au Multihybrid Nanoarchitecture, International Journal of Electrochemical Science, 2020, 15(4):3204-3218
[22] Shi, Ling; Wang, Zefeng*; Chen, Xianlan; Yang, Guangming*; Liu, Wei*; Reduced Graphene Oxide/Polydopamine/Gold Electrode as Elecrochemical Sensor for Simultaneous Determination of Ascorbic Acid, Dopamine, and Uric Acid, International Journal of Electrochemical Science, 2019, 14(9):8882-8891
[23] Ling Shi; Zefeng Wang*; Na Wu; Xianlan Chen; Guangming Yang*; Wei Liu*; A Simple Electrochemical Immunosensor for Highly Sensitive Detection of Aflatoxin B1 Based on Gold Nanoparticle Decorated Carboxylated Graphene Oxide, Int. J. Electrochem. Sci, 2019, 15:1655-1668
[24] Shi, Ling; Wang, Zefeng*; Chen, Xianlan; Yang, Guangming*; Liu, Wei*; Preparation of Pt-Pd/PANI/Graphene Nanosheets Composites as Electrocatalysts for Direct Methanol Fuel Cell, International Journal of Electrochemical Science, 2019, 14(8):7104-7115
[25] Chen, Xianlan; Li, Huajian; Zhang, Guowei; Feng, Shaoping; Yang, Guangming*; Shi, Ling; Liu, Wei; Liu, Guiyang; Pan, Haibo; Au@Pt Hybrid Nanorods Encapsulated in B, S dual-doped Graphene as Highly Sensitive Immunosensing Platform for Electrochemical Determination of Aflatoxin B-1, International Journal of Electrochemical Science, 2020, 15(7):6269-6289
[26] Chen, Xianlan; Zhang, Guowei; He, Ying; Shi, Ling; Zhang, Jucheng; Yang, Guangming*; Pan, Haibo; Liu, Wei*; Feng, Shaoping*; A Sensitive Electrochemical Sensor Based on Au@Pd Hybrid Nanorods Supported on B-doped Graphene for Simultaneous Determination of Acetaminophen, Dopamine and Tyrosine, International Journal of Electrochemical Science, 2020, 15(6):5927-5944
[27] 杨光明; 张俊翠; 尹学虎; 魏芳; 郑丽娇; 胡玉雄; 杨红萍; 固相微萃取头及其制备方法及其应用,2019-11-12, 中国,CN201911098561.9(授权)
[28] 杨光明; 曾斯丽; 陈昕娜; 廖文椿; 韦堂娟; 杨红萍; 固相微萃取头及其制备方法及应用,2019-11-12, 中国,201911103805.8(授权)
[29] 杨光明; 刘卫; 徐世娟; 陈显兰; 石玲; 甲砜霉素分子印迹电化学传感器的应用,2022-0304-至2042-03-03, 中国,CN110568038B(授权)
[30] 杨光明; 刘卫; 徐世娟; 陈显兰; 石玲; 甲砜霉素分子印迹电化学传感器及其制备方法与应用,2017-3-22至2036-11-2, 中国,CN201610944433.1(授权)
[31] 杨光明,龙云惠.基于师生学习共同体的分析化学课程的设计与实施[J].大学化学,2024,39(03):132-137.
[32] 杨光明,闵勇.基于地方特色资源应用型人才培养路径的探索与实践[J].大学化学,2024,39(12):32-39.
[33] 李晓飞,杨光明,李珊.氢化物原子荧光光谱分析中的故障及其排除[J].云南化工,2024,51(05):144-148.
[34] 云南省级一流课程,分析化学,2024.05.