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陈辛夷
2023-05-13 21:58
  • 陈辛夷
  • 陈辛夷 - 副教授-厦门大学-萨本栋微米纳米科学技术研究院-个人资料

近期热点

资料介绍

个人简历


2013年毕业于香港大学物理学系获得哲学博士学位(PhD),同年加入厦门大学萨本栋微米纳米科学技术研究院任助理教授。

研究领域


二维材料制备与改性 材料缺陷和界面物理 光催化 石墨烯产业化应用

近期论文


[1] Guo, H. C., Long, D., Zheng, Z. M., Chen, X. Y.*, Ng, A. M. C.*, Lu, M. Defect-enhanced performance of a 3D graphene anode in a lithium-ion battery, Nanotechnology 28, 505402, 2017. [2] Long, D., Guo, H. C., Cui, J. Q., Chen, X. Y.*, Lu, M. Rapid etching of carbon fiber induced by noble metal nanoparticles, Materials Letters 197, 45–47, 2017. [3] Wang, T., Guo, H. C., Chen, X. Y.*, Lu, M.* Low-temperature thermal reduction of suspended graphene oxide film for electrical sensing of DNA-hybridization, Materials Science and Engineering C 72, 62–68, 2017. [4] Chen, X. Y.*, Guo, H. C., Wang, T., Lu, M.*, Wang, T. H. In-situ fabrication of reduced graphene oxide (rGO)/ZnO heterostructure: surface functional groups induced electrical properties, ELectrochimica Acta, 196, 558, 2016. [5] Li, Y. F., Lin, B. C., Ge, L. K., Guo, H. C., Chen, X. Y.*, Lu, M.* Real-time spectroscopic monitoring of photocatalytic activity promoted by graphene in a microfluidic reactor, Scientific Reports 6, 28803, 2016. [6] Chen, X. Y.*, Ng, A. M. C., Djurišić, A. B., Ling, C. C., Chan, W. K., Fong, W. K., Lui, H. F., Surya, C., Cheng, C. C. W., and Kwok, W. M. GaN/MgO/ZnO heterojunction light-emitting diodes, Thin Solid Film, 527(1), 303-307, 2013. [7] Chen, X. Y., Ng, A. M. C., Djurišić, A. B., Ling, C. C., Chan, W. K., Hydrothermal treatment of ZnO nanostructures, Thin Solid Films, 520(7), 2656-2662, 2012. [8] Chen, X. Y., Fang, F., Ng, A. M. C., Djurišić, A. B., Cheah, K. W., Ling, C. C., Chan, W. K., Fong, P. W. K., Lui, H. F., and Surya, C., Nitrogen doped-ZnO/n-GaN heterojunctions, Journal of Applied Physics, 109(8), 084330, 2011. [9] Chen, X. Y., Ng, A. M. C., Fang, F., Ng, Y. H., Djurišić, A. B., Tam, H. L., Cheah, K. W., Gwo, S., Chan, W. K., Fong, P. W. K., Lui, H. F., and Surya, C., ZnO nanorod/GaN light-emitting diodes: The origin of yellow and violet emission bands under reverse and forward bias, Journal of Applied Physics, 110(9), 094513, 2011. [10] Chen, X. Y., Fang, F., Ng, A. M. C., Djurišić, A. B., Chan, W. K., Lui, H. F., Fong, P. W. K., Surya, C., and Cheah, K. W., Effect of doping precursors on the optical properties of Ce-doped ZnO nanorods, Thin Solid Films, 520(3), 1125–1130, 2011. [11] Chen, X. Y., Ng, A. M. C., Fang, F., Djurišić, A. B., Chan, W. K., Tam, H. L., Cheah, K. W., Fong, P. W. K., Lui, H. F., and Surya, C., The Influence of the ZnO seed layer on the ZnO nanorod/GaN LEDs, Journal of the Electrochemical Society, 157(3), H308–H311, 2010. [12] Chen, X. Y., Fang, F., Ng, A. M. C., Djurišić, A. B., and Tong, S. Y., Growth of triangular ZnO nanorods by electrodeposition, Journal of the Electrochemical Society, 157(12), K269–K272, 2010. [13] Chen, X. Y., Yip, C. T., Fung, M. K., Djurišić, A. B., and Chan, W. K., GaN-nanowire-based dye-sensitized solar cells, Applied Physics A - Materials Science & Processing, 100(1), 15–19, 2010. [14] Chen, X. Y., Cui, H., Liu,P., Yang, G. W. Double-layer hexagonal Fe nanocrystals and magnetism, Chemistry of Materials, 2008, 20(5), 2035-2038. [15] Chen, X. Y., Cui, H., Liu, P., Yang, G. W. Shape-induced ultraviolet absorption of CuO shuttlelike nanoparticles, Applied Physics Letters, 2007, 90(18), 183118. [16] Liu, X., Wang, G., Ng, A., Ng, Y. H., Leung, Y. H., Chen, X. Y., Djurisic, A. B., Ng, A. M. C., Chan, W. K., Zinc oxideprecursor treatment for improving dye-sensitized solar cell efficiency,Physica Status Solidi B-Basic Solid State Physics, 2015, 252(3), 532-537. [17] Leung, Y. H., Chen, X. Y., Ng, A. M. C., Guo, M. Y., Liu, F. Z., Djurišić, A. B. *, Chan, W. K., Shi, X. Q., Van Hove, M. A. Green emission in ZnO nanostructures-Examination of the roles of oxygen and zinc vacancies, Applied Surface Science, 271, 202-209, 2013. [18] Beinik, I., Kratzer, M., Wachauer, A., Wang L., Piryatinski, Y. P., Brauer, G., Chen, X. Y., Hsu, Y. F., Djurišić,A. B., Teichert, C., Photoresponse from single upright-standing ZnO nanorods explored by photoconductive AFM, Beilstein Journal of Nanotechnology, 2013, 208-207, 2013. [19] Wong, K. K., Ng, A., Chen, X. Y., Ng, Y. H., Leung, Y. H., Ho, K. H., Ng, A. M. C., Djurišić,A. B., Chan, W. K., Yu, L. H. Effect of ZnO Nanoparticle Properties on Dye-Sensitized Solar Cell Performance, ACS Applied Materials & Interfaces, 4, 1254-1261, 2012. [20] Fang, F., Chen, X. Y., Ng, A. M. C., Djurišić, A. B., Cheah, K. W., Chan, W. K., Optical properties of ZnO-based core-shell nanostructures, Thin Solid Films, 519(7), 2296–2301, 2011.

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