个人简介
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公培伟博士简介

信息来源: 暂无 发布日期: 2015-12-30 浏览次数: 9402

 

个人简历:

公培伟,博士,副教授,硕士生导师。负责《材料化学》、《复合材料》、《无机非金属材料》、《材料化学实验》等理论和实验课程的讲授,主持完成校级教改项目1项,指导大学生创新创业训练项目3项,指导大学生获创新创业生命科学大赛全国特等奖一项,在核心期刊发表教学论文2篇,获澳门新普京青年教师讲课比赛二等奖、澳门新普京“优秀研究生指导教师”、“优秀学士学位论文指导老师”等称号。科研上,围绕无机/有机功能纳米材料设计合成及其摩擦学与药物负载性能研究,以第一作者及通讯作者在NanoscaleChemical CommunicationsChemical Engineering JournalCarbonJournal of Material ChemistryChemistry-A European Journal等刊物发表多篇研究论文,与他人合作发表学术论文50余篇,获授权发明专利5项。主持国家自然科学基金、山东省自然科学基金项目、山东省教育厅项目,参与国家自然科学基金项目、省基金项目7项,主持校级科研项目2项。

联系方式:675983852@qq.com0537-4455129QQ675983852

教育背景及经历:

2006.09-2010.07,澳门新普京 澳门普京娱乐场,获得学士学位

2010.09-2015.06,中国科学院兰州化学物理研究所 固体润滑国家重点实验室,获得博士学位

2015.07-至今,澳门新普京 澳门普京娱乐场 从事教学和科研工作

研究生/本科生招生与培养:

每年拟招收硕士研究生1~2名、本科生科研训练学生3~5名、毕业论文学生5~9名,指导的研究生获得圣地英才奖、研究生单项奖等,多名参加科研训练的本科生同学被保送至山东大学、中国科学院过程所、中国药科大学、天津大学等高校院所攻读研究生,毕业同学以优异成绩被中科院、985/211高校录取。欢迎踏实勤奋、认真努力的优秀学生加入。

部分代表性学术论文/专利:

1. Bin Wang, Xicheng Liu, Peiwei Gong*, Xingxing Ge, Zhe Liu*, Jinmao You, Fluorescent COFs with highly conjugated structure for drug visual loading and responsive release, Chemical Communications, 2020, 56, 519-522. Selected as inside front cover.

2. Peiwei Gong*, Lei Zhang, Jingyi Peng, Shuohan Li, Junfeng Chen, Xicheng Liu, Hongwei Peng, Zhe Liu*, Smart “on-off-on” fluorescent switches for drug visual loading and responsive delivery, Dyes and Pigments, 2020, 173, 107893.

3. Jingyi Peng, Peiwei Gong*, Shuohan Li, Fei Kong, Xingxing Ge, Bin Wang, Lihua Guo, Zhe Liu*, Jinmao You, A smart bioresponsive nanosystem with dual-modal imaging for drug visual loading and targeted delivery, Chemical Engineering Journal, 2020, 10.1016/j.cej.2019.123619.

4. Lei Zhang, Mengzhen Wang, Fei Kong, Shuohan Li, Gangyan Dai, Peiwei Gong*, Zhe Liu*, Synthesis of novel nanosized fluorinated carbon fiber with high NIR absorption and its application in cancer chemo-photothermal therapy, Materials Letters, 2019, 244, 39-42.

5. Peiwei Gong, Lu Sun, Fei Wang, Xicheng Liu, Zhengquan Yan, Mengzhen Wang, Lei Zhang, Zhenzhen Tian, Zhe Liu, Highly fluorescent N-doped carbon dots with two-photon emission for ultrasensitive detection of tumor marker and visual monitor anticancer drug loading and delivery, Chemical Engineering Journal, 2019, 365, 4994–1002.

6. Peiwei Gong, Lei Zhang, Xiang-ai Yuan, Xicheng Liu, Xiuli Diao, Qiao Zhao, Zhenzhen Tian, Jing Sun, Zhe Liu, Jinmao You, Multifunctional fluorescent PEGylated fluorinated graphene for targeted drug delivery: an experiment and DFT study, Dyes and Pigments, 2019, 1162, 573-582.

7. Peiwei Gong, Fei Wang, Feifei Guo, Jinfeng Liu, Bin Wang, Xingxing Ge, Shuohan Li, Zhe Liu, Fluorescence turn-off Ag/fluorinated graphene composite with high NIR absorption for effective killing cancer cells and bacteria, Journal of Materials Chemistry B, 2018, 6, 7926-7935.

8. Peiwei Gong, Shuaijie Ji, Jinqing Wang, Dujuan Dai, Fei Wang, Meng Tian, Lei Zhang, Feifei Guo, Zhe Liu, Fluorescence-switchable ultrasmall fluorinated graphene oxide with high near-infrared absorption for controlled and targeted drug delivery, Chemical Engineering Journal, 2018, 348, 438–446.

9. Peiwei Gong, Lihua Guo, Minghui Pang, Dandan Wang, Lu Sun, Zhenzhen Tian, Juanjuan Li, Yuanyuan Zhang and Zhe Liu, Nano-sized paramagnetic and fluorescent fluorinated carbon fiber with high NIR absorbance for cancer chemo-photothermal therapy. Journal of Materials Chemistry B, 2018, 6, 3068-3077. Collected in 2018 J. Mater. Chem. B HOT Papers

10. Peiwei Gong, Jiuyao Du, Dandan Wang, Bobo Cao, Meng Tian, Yuhua Wang, Lu Sun, Shuaijie Ji and Zhe Liu, Fluorinated graphene as a novel anticancer nanocarrier: an experimental and DFT study. Journal of Materials Chemistry B, 2018, 6, 2769-2777.

11. Peiwei Gong, Qiao Zhao, Dujuan Dai, Shumiao Zhang, Zhenzhen Tian, Lu Sun, Jiashuo Ren and Zhe Liu. Functionalized ultrasmall fluorinated graphene with high NIR absorbance for controlled delivery of mixed anticancer drugs. Chemistry – A European Journal, 2017, 23, 17531–17541.

12. Lu Sun, Peiwei Gong*, Xicheng Liu, Minghui Pang, Meng Tian, Jinyu Chen, Jiuyao Du and Zhe Liu. Fluorinated Carbon fiber as a novel nanocarrier for cancer chemo-photothermal therapy. Journal of Materials Chemistry B, 2017, 5, 6128-6137.

13. Jiuyao Du, Jinfeng Liu, Peiwei Gong*, Meng Tian, Lu Sun, Shuaijie Ji, Lei Zhang. Zhe Liu. Construction of a novel fluorinated graphene-based magnetic nanocomposite and its application in cancer photo-chemotherapy. Material Letters, 2017, 196, 165-167.

14. Peiwei Gong, Jinqing Wang, Kaiming Hou, Zhigang Yang, Zhaofeng Wang, Zhe Liu, Shengrong Yang. Small but strong: The influence of fluorine atoms on formation and performance of graphene quantum dots using a gradient F-sacrifice strategy. Carbon, 2017, 112, 63-71.

15. Peiwei Gong, Zhigang Yang, Wei Hong, Zhaofeng Wang, Kaiming Hou, Jinqing Wang, et al. To lose is to gain: effective synthesis of water-soluble graphene fluoroxide quantum dots by sacrificing certain fluorine atoms from exfoliated fluorinated graphene. Carbon, 2015, 83, 152-161.

16. Peiwei Gong, Zhaofeng Wang, Jinqing Wang, Honggang Wang, Zhangpeng Li, Zenjie Fan, et al. One-pot sonochemical preparation of ?uorographene and selective tuning of its ?uorine coverage. Journal of Materials Chemistry, 2012, 22, 16950-16956.

17. Peiwei Gong, Jinqing Wang, Weiming Sun, Di Wu, Zhaofeng Wang, Honggang Wang, et al. Tunable photoluminescence and spectrum split from fluorinated to hydroxylated graphene. Nanoscale, 2014, 6, 3316-3324.

18. Peiwei Gong, Kaiming Hou, Xiangyuan Ye, Limin Ma, Jinqing Wang, and Shengrong Yang. Synthesis of highly luminescent fluorinated graphene quantum dots with tunable fluorine coverage and size. Material Letters, 2015, 143, 112-115.

19. Peiwei Gong, Zhaofeng Wang, Zhangpeng Li, Yongjuan Mi, Jinfeng Sun, Jinqing Wang, et al. Photochemical synthesis of fluorinated graphene via a simultaneous fluorination and reduction route. RSC Advances, 2013, 3, 6327-6330.

20. Peiwei Gong, Zhaofeng Wang, Zenjie Fan, Wei Hong, Zhigang Yang, Jinqing Wang, et al. Synthesis of chemically controllable and electrically tunable graphene films by simultaneously fluorinating and reducing graphene oxide. Carbon, 2014, 72, 176-184.

21. Ping Wen, Peiwei Gong, Jinfeng Sun, Jinqing Wang, Shengrong Yang. Design and synthesis of Ni-MOF/CNT composites and rGO/carbon nitride composites for an asymmetric supercapacitor with high energy and power density. Journal of Materials Chemistry A, 2015, 3, 13874-13883.

22. Ping Wen, Peiwei Gong, Yongjuan Mi, Jinqing Wang, Shengrong Yang. Scalable fabrication of high quality graphene by exfoliation of edge sulfonated graphite for supercapacitor application. RSC Advances, 2014, 4, 35914-35918.

23. Kaiming Hou, Peiwei Gong, Jinqing Wang, Zhigang Yang, Zhaofeng Wang, Shengrong Yang. Structural and tribological characterization of fluorinated graphene with various fluorine contents prepared by liquid-phase exfoliation. RSC Advances, 2014, 4, 56543-56551.

24. Wei Hong, Jinqing Wang, Peiwei Gong, Jinfeng Sun, Lengyuan Niu, Zhigang Yang, Zhaofeng Wang, Shengrong Yang. Rational construction of three dimensional hybrid Co3O4@NiMoO4 nanosheets array for energy storage application. Journal of Power Sources, 2014, 270, 516-525.

25. Zengjie Fan, Qianqian Lin, Peiwei Gong, Bin Liu, Jinqing Wang, Shengrong Yang. A new enzymatic immobilization carrier based on graphene capsule for hydrogen peroxide biosensors. Electrochimica Acta, 2015, 151, 186-194.

26. Xiangyuan Ye, Peiwei Gong, Jinqing Wang, Honggang Wang, Sili Ren, Shengrong Yang. Fluorinated graphene reinforced polyimide films with the improved thermal and mechanical properties. Composites Part A-Applied Science and Manufacturing, 2015, 7, 96-103.

27. Kaiming Hou, Peiwei Gong, Jinqing Wang, Zhigang Yang, Limin Ma, Shengrong Yang. Construction of highly ordered fluorinated graphene composite coatings with various fluorine contents for enhanced lubrication performance. Tribology Letters, 2015, 60, 1.

28. 一种制备氟含量和尺寸可调的氟化碳纤维的方法。专利号:ZL201611175692.9

29. 一种快速高效制备氟含量可调氟化石墨烯的方法。专利号:ZL201410110287.3

30. 一种水溶性双色氟化石墨烯量子点的制备方法。专利号:ZL201410110362.6

31. 水溶性的氟含量可控的氟化石墨烯量子点的制备方法。专利号:ZL201410450914.8

32. 一种氟化石墨烯纳米载药系统及其制备方法和应用。专利号:ZL2016109170505