王超教授

仪器科学与技术研究所

电 话:+86 010-62787827

E-mail:

2018

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63.Y. Hu, W. Chen, T. Lei, B. Zhou, Y. Jiao, Y. Yan, X. Du, J. Huang, C. Wu, X. Wang, Y. Wang, B. Chen, J. Xu,* C. Wang* and J. Xiong*, Carbon Quantum Dots–Modifed Interfacial Interactions and Ion Conductivity for Enhanced High Current Density Performance in Lithium–Sulfur Batteries, Advanced Energy Materials (Adv. Energy. Mater.), 9(7): 1802955, 2018.

62.J. Chen*, X.N. Lan, C. Wang, Q.Y. Zhang, The Formation Mechanism and Corrosion Resistance of a Composite Phosphate Conversion Film on AM60 Alloy. Materials, 11(3): 402, 2018.

61.L.Z. Guo,H.Y. He, Y.R. Ren, C. Wang, M.Q. Li*, Core-shell SiO@F-doped C composites with interspaces and voids as anodes for high-performance lithium-ion batteries, Chemical Engineering Journal (Chem. Eng. J), 335, 32-34, 2018.

60.C.H. Gong, K. Hu, X.P. Wang, P.H. Wangyang, C.Y. Yan, J.W. Chu,* M. Liao,* L.P. Dai, T.Y. Zhai, C. Wang, L. Li,* and J. Xiong*, 2D Nanomaterial Arrays for Electronics and Optoelectronics, Advanced Functional Materials (Adv. Funct. Mater.), 28(16), 1706559, 2018.

59.H. Wang, Y.M. Li, Z.L. Ning*, L. Huang, C. Zhong, C. Wang, M.J. Liu, X. Lai, D.J. Gao, J. Bi*, A novel red phosphor LixNa1-xEu(WO4)2 solid solution: Influences of Li/Na ratio on the microstructures and luminescence properties, Journal of Luminescence (J. Lumin.), 201, 364-371, 2018.

58.C. Wang*, J. Hu, F. Wang, J. Jiang, Z. Z. Zhang, Y. Yang, J. X. Ding, H. C. Jiang, Y. M. Wang, H. Y. Wei, Measurement of Ti-6Al-4V alloy ignition temperature by reflectivity detection, Review of Scientific Instruments (Rev. Sci. Instrum.), 89, 044902, 2018. WOS:000431139400045

57.P. Ge, H.S. Hou, X.Y. Cao, S.J. Li, G.G. Zhao, T.X. Guo, C. Wang, and X.B. Ji*, Multidimensional evolution of carbon structures underpinned by temperature-induced intermediate of chloride for sodium-ion batteries, Advanced Science (Adv. Sci.), 5(6), 1800080, 2018.

56.W.Y. Ren, H.T. Zhu, Q. Zhu, U. Saparamadu, R. He, Z.H. Liu, J. Mao, C. Wang, K. Nielsch, Z.M. Wang,* and Z.F Ren*, Ultrahigh power factor in thermoelectric system Nb0.95M0.05FeSb (M = Hf, Zr, and Ti), Advanced Science (Adv. Sci.), 5(7), 1800278, 2018.55.WANG Chao*, GOU Xue-Ke, DUAN Ying, HU Jun, ZhANG Ze-Zhan, YANG Yang, JIANG Jing, JIANG Hong-Chuan, DING Jie-Xiong, CHENG Yu-Hua, LI Li, ZHANG Jiang-Mei, CHEN Hong-Min, XIONG Bing, LIU Xian-Fu, SHI Xiao-Jiang. A review of aero-engine turbine blade temperature measurement. Journal of Infrared and Millimeter Waves (J. Infrared Millim. W.). 2018, 37(04): 501-512.

54.Chao Wang#*, Yi Niu#, Jing Jiang#,Yide Chen, Hanqing Tian, Rui Zhang, Ting Zhou, Junfeng Xia, Yan Pan, and Shuangyin Wang*. Hybrid Thermoelectric Battery Electrode FeS2 Study. Nano Energy, 2018, 45: 432-438. WOS:000425396400049