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陳云
閱讀次數: 添加時間:2016/09/14 發布:管理員

 

陳云,副教授,碩士生導師。2012年獲南京大學化學博士學位。20126月至20143月、20144月至20155月分別在新加坡南洋理工大學 (Nanyang Technological University, Singapore)、瑞典烏普薩拉大學 (Uppsala University, Sweden) 從事博士后研究。201512月入職南京工業大學化學與分子工程學院。主要研究方向為基于新型納米材料的生物傳感器、酶生物燃料電池、光電化學水裂解產氫器件和新型綠色水處理藥劑的研發。至今共發表SCI論文35篇,其中一區論文17篇,二區論文9篇。主持國家重點研發計劃子課題、國家自然科學基金青年項目、江蘇省自然科學基金青年項目、南京工業大學留學回國人員科研啟動項目等,參與“十二五”國家科技支撐計劃項目1項,作為參與人已完成國家自然科學基金面上項目2項。

 

主持在研項目

  1. 環境友好型海水淡化關鍵藥劑合成技術研究 (2017YFC0404102),國家重點研發計劃子課題,2017. 07 ~ 2020. 12。

  2. 基于新型量子點光電化學酶生物燃料電池的研究 (21605084),國家自然科學基金青年項目,2017. 01 ~ 2019. 12。

  3. 基于新型納米量子點光電催化裂解水產氫的研究 (BK20160983),江蘇省自然科學基金青年項目,2016. 07 ~ 2019. 06。

  4. 南京工業大學留學回國人員科研啟動經費 (39837104)。

 

發表文章

1. Y. Chen, Y. Li, D. Sun, D. Tian, J. R. Zhang* and J. J. Zhu*. ‘Fabrication of gold nanoparticles on bilayer graphene for glucose electrochemical biosensing’. Journal of Materials Chemistry, 2011, 21, 7604–7611. (highlight)(6.626)

2. Y. Chen, Y. Shen, D. Sun, H. Zhang, D. Tian, J. R. Zhang* and J. J. Zhu*. ‘Fabrication of a dispersible graphene/gold nanoclusters hybrid and its potential application in electrogenerated chemiluminescence’. Chemical Communications, 2011, 47, 11733–11735. (6.164)

3. Y. Chen, K. P. Prasad, X. W. Wang, H. C. Pang, R. Y. Yan, A. Than, M. B Chan-Park, P. Chen*. ‘Enzymeless multi-sugar fuel cell with high power output based on 3D graphene-Co3O4 hybrid electrodes’. Physical Chemistry Chemical Physics, 2013, 15, 9170–9176. (3.567)

4. Y. Chen, P. P. Gai, L. Jin, D. Zhu, D. B. Tian, E. S. Abdel-Halim, J. R. Zhang,* and J. J. Zhu*. ‘Fabrication of PEDOT nanowhiskers for electrical connection of the hemoglobin active center for H2O2 electrochemical biosensing’. Journal of Materials Chemistry B, 2013, 1, 3451–3457. (highlight)(5.047)

5. Y. Chen, P. P. Gai, J. R. Zhang,* and J. J. Zhu*. “Design of an enzymatic biofuel cell with large power output’. Journal of Materials Chemistry A, 2015, 3, 11511–11516. (10.733).

6. Y. Chen, H. Chen, and H. Tian*. ‘Immobilization of a Cobalt Catalyst on Fullerene in Molecular Devices for Water Reduction’. Chemical Communications, 2015, 51, 11508–11511. (6.164).

7. Y. Chen, P. P. Gai, J. J. Xue, J. R. Zhang,* and J. J. Zhu*. ‘An “ON–OFF” switchable power output of enzymatic biofuel cell controlled by thermal-sensitive polymer’. Biosensors & Bioelectronics, 2015, 74, 142–149. (9.518).

8. Y. Chen, Y. Hao, W. Huang, Y. Ji, W. Z. Yang,* X. S. Yin, Y. Liu, X. Ling. ‘Corrosion behavior of Ni-P-nano-Al2O3 composite coating in the presence of anionic and cationic surfactants’. Surface & Coatings Technology, 2017, 310, 122–128. (3.192)

9. K. P. Prasad,? Y. Chen,? and P. Chen*. ‘Three-dimensional graphene?carbon nanotube hybrid for high-performance enzymatic biofuel cells’. ACS Applied Materials & Interfaces, 2014, 6, 3387?3393. (co-first author)(8.456)

10. W. Huang, B. Xu, W. Z. Yang*, K. G. Zhang, Y. Chen*, X. S. Yin, Y. Liu, Z. Y. Ni, F. Pei ‘Corrosion behavior and biocompatibility of hydroxyapatite/magnesium phosphate/zinc phosphate composite coating deposited on AZ31 alloy’. Surface & Coatings Technology. 2017, 326, 270?280. (3.192)

11. Y. Ji, Y. Chen*, J. X. Le, M. Q. Qian, Y. Huan, W. Z. Yang*, X. S. Yin, Y. Liu, X. R. Wang, Y. Z. Chen. ‘Highly Effective Scale Inhibition Performance of Amino Trimethylenephosphonic Acid on Calcium Carbonate’. Desalination, 2017, 422, 165?173. (6.035)

12K. G. Zhang, W. Z. Yang*, B. Xu*, Y. Chen*, X. S. Yin, Y. Liu, H. Z. Zuo. ‘Inhibitory effect of konjac glucomanan on pitting corrosion of AA5052 aluminium alloy in NaCl solution’. Journal of Colloid and Interface Science, 2018, 517, 52?60. (6.361)

13. Y. Y. Guo1, Z. H. Chen1, Y. W. Zuo, Y. Chen*, W. Z. Yang*, B. Xu*. ‘Ionic liquids with two typical hydrophobic anions as acidic corrosion inhibitors’. Journal of Molecular Liquids, 2018, 269, 886?895. (4.561)

14. Z. H. Chen, W. Z. Yang*, B. Xu*, Y. Chen,* M. Q. Qian, X. Su, Z. H. Li, X. S. Yin, Y. Liu. ‘Corrosion protection of carbon steels by electrochemically synthesized V-TiO2/polypyrrole composite coatings in 0.1 M HCl solution’. Journal of Alloys and Compounds, 2019, 771, 857?868. (4.175)

15. W. N. Gong, X. S. Yin, Y. Liu, Y. Chen*, W. Z. Yang*. ‘2-amino-4-(4-methoxyphenyl)?thiazole as a novel corrosion inhibitor for mild steel in acidic medium’. Progress in Organic Coatings, 2019, 126, 150?161. (3.42)

16W. N. Gong, B. Xu, X. S. Yin, Y. Liu, Y. Chen*, W. Z. Yang*. ‘Halogen-substituted thiazole derivatives as corrosion inhibitors for mild steel in 0.5 M sulfuric acid at high temperature’. Journal of the Taiwan Institute of Chemical Engineers, 2019, 97, 466?479. (3.834)

17. X. Su, Y. Chen*, L. Ren, Y. He, X. S. Yin, Y. Liu, W. Z. Yang.* ‘Cobalt catalyst grafted CdSeTe quantum dots on porous NiO as photocathode for H2 evolution under visible light.’ ACS Sustainable Chemistry & Engineering, 2019, 7, 11166?11174. (6.97)

18. Y. M. Tang,* Y. Chen, W. Z. Yang, Y. Liu, X. S. Yin and J. T. Wang. ‘Electrochemical and theoretical studies of thienyl-substituted amino triazoles on corrosion inhibition of copper in 0.5 M H2SO4’. Journal of Applied Electrochemistry, 2008, 38, 1553–1559. (2.366)

19. Y. M. Tang,* Y. Chen, W. Z. Yang, X. S. Yin, Y. Liu and J. T. Wang. ‘3,5-Bis(2-thienyl)-4-amino-1,2,4-triazole as a corrosion inhibitor for copper in acidic media’. Anti-Corrosion Methods and Materials, 2010, 57, 227–233. (0.614)

20. D. Zhu, Y. Chen, L. Jiang, J. Geng, J. R. Zhang* and J. J. Zhu*. ‘Manganese-Doped ZnSe Quantum Dots as a Probe for Time-Resolved Fluorescence Detection of 5-Fluorouracil’. Anal. Chem., 2011, 83, 9076–9081. (6.35)

21. K. P. Prasad, Y. Chen, M. Alam Sk, A. Than, Y. Wang, H. Sun, K. Lim, X. Dong and P. Chen*. ‘Fluorescent Quantum Dots Derived from PEDOT and their Applications In Optical Imaging and Sensing’. Materials Horizons, 2014, 1, 529–534. (14.356)

22. B. Li, Y. Chen, W. Huang, W. Z. Yang*, X. S. Yin, Y. Liu. ‘In vitro degradation, cytocompatibility and hemolysis tests of CaF2 doped TiO2-SiO2 composite coating on AZ31 alloy’. Applied Surface Science, 2016, 382, 268–279. (5.155)

23. B. Li, Y. Chen, W. Huang, W. Z. Yang*, X. S. Yin, Y. Liu. ‘Enhanced corrosion resistance of hydroxyapatite/magnesium-phosphate-composite-coated AZ31 alloy co-deposited by electrodeposition method’. Ceramics International, 2016, 42, 13074–13085. (3.45)

24. P. P. Gai, Y. S. Ji, W. J. Wang, R. B. Song, C. Zhu, Y. Chen, J. R. Zhang,* and J. J. Zhu*. ‘Ultrasensitive Self-Powered Cytosensor’. Nano Energy, 2016, 19, 541–549. (15.548)

25. P. P. Gai, R. B. Song, C. Zhu, Y. S. Ji, Y. Chen, J. R. Zhang,* and J. J. Zhu*. ‘A Ternary Hybrid of Carbon Nanotubes/Graphitic Carbon Nitride Nanosheets/Gold Nanoparticles as Robust Substrate Electrodes in Enzyme Biofuel Cell’. Chemical Communications, 2015, 79, 14735–14738. (6.164)

26. K. G. Zhang, W. Z. Yang, X. S. Yin, Y. Chen, Y. Liu, J. X. Le, B. Xu. ‘Amino acids modified konjac glucomannan as green corrosion inhibitors for mild steel in HCl solution’. Carbohydrate Polymers, 2018, 181, 191–199. (6.044)

27. L. Yang, W. Z. Yang,* B. Xu*, X. S. Yin, Y. Chen, Y. Liu, Y. Ji, Y. Huan. ‘Synthesis and scale inhibition performance of a novel environmental friendly and hydrophilic terpolymer inhibitor’. Desalination, 2017, 416, 166–174. (6.035)

28Y. Y. Guo, B. Xu, Y. Liu*, W. Z. Yang*, X. S. Yin, Y. Chen, J. X. Le, Z. H. Chen. ‘Corrosion inhibition properties of two imidazolium ionic liquids with hydrophilic tetrafluoroborate and hydrophobic hexafluorophosphate anions in acid medium’. Journal of Industrial and Engineering Chemistry, 2017, 56, 234–247. (4.978)

29. Z. H. Chen, Y. J. Jin, W. Z. Yang*, B. Xu*, Y. Chen, X. S. Yin, Y. Liu. ‘Fabrication and characterization of polypyrrole coatings by embedding antimony modified SnO2 nanoparticles’. Journal of Industrial and Engineering Chemistry, 2019, 75, 178–186. (4.978)

30. P. P. Gai, Y. S. Ji, Y. Chen, C. Zhu, J. R. Zhang,* and J. J. Zhu*. ‘A Nitrogen-doped graphene/gold nanoparticle/formate dehydrogenase bioanode for high power output membrane-less formic acid/O2 biofuel cell’. Analyst, 2015, 140, 1822–1826. (4.019)

31. K. G. Zhang, W. Z. Yang*, Y. Chen, B. Xu, X. S. Yin, Y. Liu, H. Z. Zuo. ‘Enhanced inhibitive performance of fluoro-substituted imidazolium-based ionic liquid for mild steel corrosion in hydrochloric acid at elevated temperature’. Journal of Materials Science, 2018, 53, 14666–14680. (3.442)

32. D. Sun, L. Jin, Y. Chen, J. R. Zhang,* and J. J Zhu*. ‘Microwave Assisted In-situ Synthesis of Graphene/PEDOT Hybrid and its Application in Supercapacitors’. ChemPlusChem, 2013, 78, 227–234. (3.441)

33. Z. H. Chen, W. Z. Yang*, B. Xu*, Y. Y. Guo, Y. Chen, X. S. Yin, Y. Liu. ‘Corrosion behaviors and physical properties of polypyrrole-molybdate coating electropolymerized on carbon steel’. Progress in Organic Coatings, 2018, 122, 159–169. (3.42)

34. Y. Meng, W. B. Ning, B. Xu,* W. Z. Yang,* K. G. Zhang, Y. Chen, L. H. Li, X. Liu, J. H. Zheng, Y. M. Zhang. ‘Inhibition of mild steel corrosion in hydrochloric acid using two novel pyridine Schiff base derivatives: A comparative study of experimental and theoretical results’. RSC Advances, 2017, 7, 43014–43029. (3.049)

35. K. G. Zhang, W. Z. Yang*, B. Xu, X. S. Yin*, Y. Chen, Y. Liu. ‘Green Synthesis of Novel Schiff Bases as Eco-friendly Corrosion Inhibitors for Mild Steel in Hydrochloric Acid’. Chemistry Select, 2018, 3, 12486–12494. (1.716)

聯系方式

郵箱:ychen@njtech.edu.cn


地址:南京浦口區浦珠南路30號 郵編:211880 電話:025-58139535、9536、9537 郵箱:chem@njtech.edu.cn
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