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Chi Zhang,Dajun Wu,Xin Tong,Yiping Zhu,*Shaohui Xu,Dayuan Xiong, Pingsheng Guo,Yishan Wu,Ruijuan Qi,Rong Huang,Lianwei Wang, * Shaoqiang Chen and Paul K. Chu Highly efficient field emission from ZnO nanorods and nanographene hybrids on a macroporous electric conductive network,J. Mater. Chem. C ,2017, 5 ,9296 Yue Fu, Xinyao Yue, Liang Pan, Shaohui Xu, Yiping Zhu, Dayuan Xiong, Lianwei Wang*,, Paul K. Chu, Three-dimensional CoMoO4 nanorods/nanographene composites on a Ni coated macroporous electrically conductive network with excellent electrochemical performance, Materials Science & Engineering B 226 (2017) 177–187 Dajun Wu, Chi Zhang, Shaohui Xu, Yiping Zhu, Dayuan Xiong, Lianwei Wang and Paul K. Chu, Fabrication and enhanced supercapacitance of hollow nanostructured MoS2 prepared by a CATB-assisted hydrothermal process, Mater. Lett., 2016, 184: 96-99 Dajun Wu, Shaohui Xu, Chi Zhang, Yiping Zhu, Dayuan Xiong, Rong Huang, Ruijuan Qi, Lianwei Wang and Paul K. Chu, Three-dimensional homo-nanostructured MnO2/nanographene membranes on a macroporous electrically conductive network for high performance supercapacitors, J. Mater. Chem. A, 2016, 4:11317-11329. Dajun Wu, Chi Zhang, Shaohui Xu, Yiping Zhu, Dayuan Xiong, Pingsheng Guo, Yishan Wu, Ruijuan Qi, Rong Huang, Lianwei Wang and Paul K. Chu, Nitrogen-doped multilayered nanographene derived from Ni3C with efficient electron field emission, J. Mater. Chem. C, 2016, 4:9251-9260. Dajun Wu, Chi Zhang, Cheng Liang, Yiping Zhu, Shaohui Xu, Dayuan Xiong, Shaolin Xue, Lianwei Wang, Paul K. Chu, Preparation of multi-layer graphene on nickel coated silicon microchannel plates by hydrothermal carbonization procedure and its improved field emission properties, J. Mater. Chem. C, 2016, 4: 2079—2087. Cheng Liang, Leilei Chen, Dajun Wu, Chi Zhang, Shaohui Xu, Yiping Zhu, Dayuan Xiong, Pingxiong Yang, Lianwei Wang, Paul K. Chu, Hybrid Co(OH)2/nano-graphene/Ni nano-composites on silicon microchannel plates for miniature supercapacitors, Materials Letters, 2016, 176:40-43. Dajun Wu, Shaohui Xu, Mai Li, Chi Zhang, Yiping Zhu, Yuwei Xu, Weiwei Zhang, Rong Huang, Ruijuan Qi, Lianwei Wang* and Paul K. Chu, Hybrid MnO2/C nano-composites on a macroporous electrically conductive network for supercapacitor electrodes, J. Mater. Chem. A, 2015,3:16695-16707 Mai Li, Shaohui Xu, Christopher Cherry, Yiping Zhu, Dajun Wu, Chi Zhang, Xiaolin Zhang, Rong Huang, Ruijuan Qi, Lianwei Wang* and Paul K. Chu, Hierarchical 3-dimensional CoMoO4 nanoflakes on a macroporous electrically conductive networkwith superior electrochemical performance, J. Mater. Chem. A, 2015, 3: 13776-13785 Y. W. Xu, S. H. Xu, M. Li, Y. P. Zhu, L. J. Zhou, L. W. Wang* and P. K. Chu,Electronic double layer supercapacitor based on three-dimensional silicon microchannel plates in organic electrolyte , Materials Research Innovations 2015, 19: 303-309 Mai Li, Shaohui Xu, Christopher Cherry, Yiping Zhu, Rong Huang, Ruijuan Qi, Pingxiong Yang, Lianwei Wang* , Paul K. Chu, Asymmetrical Supercapacitor Composed of Thin Co(OH)2 Nanoflakes on Three-Dimensional Ni/Si Microchannel Plates with Superior Electrochemical Performance, Electrochimica Acta 2014, 149: 18–27 Mai Li, ShaohuiXu, YipingZhu, YuweiXu, PingxiongYang, LianweiWang* , PaulK.Chu, Three-dimensionalnanoscaleCo3O4 electrodeonorderedNi/Si microchannel plates for electrochemical supercapacitors, MaterialsLetters 2014, 132: 405–408 Yuwei Xu, Shaohui Xu, Mai Li , Yiping Zhu, Lianwei Wang*, Paul K. Chu, Electrodeposition of nanostructured MnO2 electrode on three-dimensional nickel/silicon microchannel plates for miniature supercapacitors, Materials Letters 2014, 126: 116–118 Mai Li , Shaohui Xu , Yiping Zhu , Pingxiong Yang , Lianwei Wang*, Paul K. Chu, Heterostructured Ni(OH)2–Co(OH)2 composites on 3D ordered Ni–Co nanoparticles fabricated on microchannel plates for advanced miniature supercapacitor, Journal of Alloys and Compounds 2014, 589: 364–371 Fei Wang, Shaohui Xu, Shanshan Zhu, Hui Peng, Rong Huang, Lianwei Wang?, Xiaohua Xie, Paul K. Chu, Ni-coated Si microchannel plate electrodes in three-dimensional lithium-ion battery anodes, Electrochimica Acta 2013, 87: 250– 255 Fei Wang, Shanshan Zhu, Mai Li, Xuefeng Lou, Keshuang Hui, Shaohui Xu, Pingxiong Yang, Lianwei Wang* , Yiwei Chen, Paul K. Chu, Anode properties and morphology evolution of three-dimensional lithium-ion battery electrodes comprising Ni-coated Si microchannel plates,Journal of Alloys and Compounds 2013, 563: 186–191 Mai Li,Shaohui Xu, Tao Liu,,Fei Wang, Pingxiong Yang, Lianwei Wang* and Paul K. Chu, Electrochemically-deposited nanostructured Co(OH)2 flakes on three-dimensional ordered nickel/silicon microchannel plates for miniature supercapacitors, J. Mater. Chem. A 2013, 1: 532-540 Bobo Peng, Fei Wang, Tao Liu, Zhenya Yang, Lianwei Wang*, Ricky K.Y. Fu, and Paul K. Chu,Novel method of separating macroporous arrays from p-type silicon substrate, Journal of Semiconductors 2012, 33(4): 043004-(1-4) Pengliang Ci, Jing Shi, Fei Wang,Shaohui Xu, Zhenya Yang, PingxiongYang, Lianwei Wang* & Paul K. Chu Fabrication and Characterization of Silicon Microchannel Plates as Temperature-Sensing Materials, Journal of Elec Materi 2011,40:2363-2367 Tao Liu, Shaohui Xu, Lianwei Wang*, Junhao Chu, Qingjiang Wang, Xiangrong, Zhu, Naici Bing, Paul K. Chu, Miniature Supercapacitors Composed of Nickel/Cobalt Hydroxide on Nickel-Coated Silicon Microchannel Plates, Journal of Materials Chemistry, 2011, 21: 19093-19100 Jing Shi, Pengliang Ci, Fei Wang, Hui Peng, Pingxiong Yang, Lianwei Wang*, Shuli Ge, Qingjiang Wang, Paul K. Chu, Nonenzymatic Glucose Sensor Based on Over-Oxidized Polypyrrole Modified Pd/Si Microchannel Plate Electrode,Biosensors and Bioelectronics 2011, 26: 2579–2584 Jing Shi, Pengliang Ci, Fei Wang, Hui Peng, Pingxiong Yang, Lianwei Wang*, Qingjiang Wang and Paul K. Chu, Pd/Ni/Si-microchannel-plate-based amperometric sensor for ethanol detection,Electrochimica Acta, 2011, 56: 4197–4202 Tao Liu, Huayan Zhang, Fei Wang, Jing Shi, Pengliang Ci, Lianwei Wang*, Shuli Ge, Qingjiang Wang, Paul K. Chu, Three-dimensional supercapacitors composed of Ba0.65Sr0.35TiO3 (BST) /NiSi2/silicon microchannel plates,Materials Science and Engineering B . 2011,176: 387–392 Pengliang Ci, Jing Shi, Fei Wang, Shaohui Xu, Zhenya Yang, Pingxiong Yang, Lianwei Wang*, Paul K. Chu, Novel thermoelectric materials based on boron-doped silicon microchannel plates, Materials Letters 2011, 65: 1618–1620 Fengjuan Miao, Bairui Tao, Li Sun, Tao Liu, Jinchuan You, Lianwei Wang*, Paul K. Chu, Capacitive humidity sensing behavior of ordered Ni/Si microchannel plate nanocomposites Sensors and Actuators A 2010, 160: 48–53 Fengjuan Miao, Bairui Taoa, Li Sun, Tao Liu, Jinchuan You, Lianwei Wang*, Paul K. Chu, Preparation and characterization of novel nickel–palladium electrodes supported, by silicon microchannel plates for direct methanol fuel cells, Journal of Power Sources 2010), 195:146–150 MIAO Feng-Juan, ZHANG Jie, XU Shao-Hui(, WANG Lian-Wei*, CHU Jun-Hao, CAO Zhi-Shen, ZHAN Peng(, WANG Zhen-Lin, An Array of One-Dimensional Porous Silicon Photonic Crystal Reflector Islands for Far-Infrared Image Detector, CHIN. PHYS. LETT. 2009, 26(4): 044207(1-4) Fengjuan Miao, Bairui Tao, Tao Liu, Li Sun, Jinchuan You, Lianwei Wang*,P.K.Chu,Amperometric Glucose Sensor based on 3D Ordered Nickel-Palladium Nanomaterial Supported by Silicon MCP Array,Sensor & Actuator B, chemical 2009, 141: 338–342 Ding Yuan, Pengliang Ci, Fei Tian, Jing Shi, Shaohui Xu, Peisheng Xin and Lianwei Wang*, Paul K Chu, Large Size P-type Silicon Microchannel Plates Prepared by Photo-Electrochemical Etching, Journal of Micro/Nanolithography, MEMS, and MOEMS (JM3), 2009, 8(3): 033012(7pp) ZHANG Jie, XU Shaohui, YANG Shiqian, WANG Lianwei*, CAO Zhishen, ZHAN Peng, WANG Zhenlin, “A stable porous silicon dielectric reflector with a photonic band gap centered at 10 μm”, Chin. Phys. Lett. 2008, 25(4): 1317-1320 Xiaoming Chen, Jilei Lin , Ding Yuan , Pengliang Ci, Peisheng Xin, Shaohui Xu and Lianwei Wang*, “Obtaining of high area-ratio free-standing silicon microchannel plate via modified electrochemical procedure”, J. Micromach. & Microeng. 2008, 18: 037003(4pp)

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