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杨国程  教授/博士生导师

 

1976年出生,黑龙江庆安人,学术骨干,教务处副处长,吉林省百名高层次创新创业引进人才;本科毕业于长春师范大学(2000.7),硕士毕业于东北师范大学(2003.7),博士毕业于中国科学院长春应用化学研究所(2007.1)2007.3–2010.3分别在香港科技大学和新加坡南洋理工大学做博士后研究工作;主要研究领域为化学修饰电极、纳米材料析氢性能研究、电化学生物传感器以及纳米药物释放系统;现主持国家自然科学基金青年基金、教育部留学回国人员科研启动基金、吉林省委组织部人才项目和吉林省留学人员科技创新创业择优资助项目各1项,参与国家自然科学基金面上项目2项;迄今发表SCI收录研究论文50多篇;申请授权中国发明专利2项、新加坡发明专利1项;发表会议论文24篇,在国际学术会议上应邀做口头报告2次;已培养硕士研究生10名,其中2名获得研究生获国家奖学金;指导学生获吉林省大学生生命科学创新实验大赛一等奖1项;指导完成国家级大学生创新创业训练计划项目2(优秀类结题)和校级大学生创新创业训练计划项目4项、“挑战杯”校赛获奖3项。 

QQ: 497651225

电话号码15526873618

Research ID: http://www.researcherid.com/rid/P-2514-2014

 

荣誉与奖励

  1. 2011年,吉林省百名高层次创新创业引进人才。

  2. 获长春工业大学2010–2012年度、2014–2016"三育人"工作先进个人。

  3. 获第三届"感到工大"年度人物提名奖。

  4. 中国高等教育学会大学素质教育研究分会第二届理事会(2016-2019)理事。


科研项目

  1. 新型多功能纳米探针对单细胞的动态多参量测量,国家自然科学基金面上项目,参与(第二名),80万元;

  2. 双脉冲LIBS技术定量分析低碳铬铁合金熔液,国家自然科学基金面上项目,参与(第三名),82万元;

  3. 电纺纳米纤维药物传输系统及其体外电化学实时评价,国家自然科学基金青年基金项目,主持,19万元;

  4. 共价化学修饰类金刚石碳薄膜电化学生物传感器的研究,教育部留学回国人员科研启动基金项目,主持,2.8万元;

  5. 生物功能纳米材料,吉林省委组织部人才项目,主持,50万元;

  6. 电纺纳米纤维药物释放系统研发,吉林省留学人员科技创新创业项目,主持,7万元。

 

代表性学术论文

  1. Boyu Yang, Haijiao Xu, Shaowen Wang, Mingjun Cai, Yan Shi, Guocheng Yang*, Hongda Wang*, Yuping Shan*, Studying the dynamic mechanism of transporting single drug carrier - polyamidoamine dendrimer through cell membranes by force tracing. Nanoscale, 2016, 8, 18027–18031.

  2. Cong Wu, Junbo Li, Dan Zhang, Boyu Yang, Lili Li, Tingting Zhou, Chunyan Zhang, Guocheng Yang*, Yuping Shan*, Electrospun transition/alkaline earth metal oxide composite nanofibers under mild condition for hydrogen evolution reaction, International Journal of Hydrogen Energy, 2016, 41(32), 13915–13922.

  3. Cong Wu, Chuang Li, Boyu Yang, Siyuan Zhou, Dingcong Shi, Yanbo Wang, Guocheng Yang*, Jin He, Yuping Shan*, Electrospun MnCo2O4 nanofibers for efficient hydrogen evolution reaction, Materials Research Express, 2016, 3, 095018.

  4. Lili Li, Tingting Zhou, Guoying Sun, Zhaohui Li, Wenxiu Yang, Jianbo Jia, Guocheng Yang*, Ultrasensitive electrospun nickel-doped carbon nanofibers electrode for sensing paracetamol and glucose, Electrochimica Acta 2015, 152, 31–37.

  5. Lili Li, Pui Mun Lee, Guocheng Yang*, Erjia Liu*, A review on electrospun nanofibers-based electrochemical sensor, Current Nanoscience 2015, 11(6), 710–721.

  6. Tingting Zhou, Lili Li, Jiabo Wang, Xuesong Chen, Guocheng Yang*, Yuping Shan*, 4-Phosphatephenyl-modified glassy carbon electrode for real-time and simultaneous electrochemical monitoring of paracetamol and diclofenac release from electrospun nanofibers, Analytical Methods 2015, 7, 9289–9294.

  7. Chunyan Zhang, Yanxiao Jiang, Dan Zhang, Yuping Shan, Guocheng Yang*, Electrochemical determination of thiourea using thiophene derivatives-modified glassy carbon electrodes, ECS Electrochemistry Letters 2015, 4(7), B1–B3.

  8. Shuang Wang, Jixiang Zhou, Xian Wang and Guocheng Yang*, Interfacial structure and electrochemical sensing properties of nitrogen-doped diamond like carbon film electrode modified with platinum nanoparticles and 4-aminobenzoic acid, Analytical Methods 2015, 7, 1929–1935.

  9. Jingting Lu, Yan Zhang, Chengli Jiao, Suresh Kumar, Dong Gu, Guocheng Yang*, Heqing Jiang*, Chunjiang Jia, Ferdi Schüth, Effect of reduction-oxidation treatment on structure and catalytic properties of ordered mesoporous Cu-Mg-Al composite oxides, Science Bulletin 2015, 60(12), 1108–1113.

  10. Guocheng Yang*, Bo Zheng, Qi Yu, Lu Wang, Mengmeng Shao, Huan Jiang, Lisheng Wang, and Erjia Liu*, 4-Aminobenzylphosphonic acid-based chemically modified glassy carbon electrodefor sensing paracetamol, Nanoscience and Nanotechnology Letters 2013, 5(6), 690–693.

  11. Guocheng Yang*, Yingshu Yang, Yizhe Wang, Libo Yu, Defeng Zhou, Jianbo Jia*, Controlled electrochemical behavior of indium tin oxide electrode modified with Pd nanoparticles via electrospinning followed by calcination toward nitrite ions, Electrochimica Acta 2012, 78, 200–204.

  12. Guocheng Yang*, Lu Wang, Yingshu Yang, Xuesong Chen, Defeng Zhou, Jianbo Jia, Dongfeng Li*, 4-Phosphatephenyl covalently modified glassy carbon electrode for real-time electrochemical monitoring of paracetamol release from electrospun nanofibers, Electroanalysis 2012, 24(10), 1937–1944.

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