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      师资

      程春
      副教授
      0755-88018568
      chengc@sustc.edu.cn

      程春博士在华中师范大学物理基地班获得学士(2002)及硕士(2004)学位,在香港科技大学纳米科学与技术项目获得博士学位(2009),在香港科技大学物理系(2009-2011)及伯克利加州大学与劳伦斯伯克利国家实验室(2011-2013)进行博士后研究。于2013年作为副教授加入南方科技大学材料科学与工程系,是广东省“杰出青年”(2015) ,广东省“优秀青年教师”(2015),广东省“青年拔尖人才”及深圳市“孔雀计划”入选者(B类,2013),国际材料学会会员(MRS),深圳市海外高层次人才联谊会理事,深圳市青年科技协会理事,南方科技大学教授会常务委员。

       

      在国际专业类著名期刊发表SCI论文50余篇(影响因子大于10的10余篇),引用 ~1000 次,H-index 19;其中包括Nature Comm., Nano Lett., ACS Nano, Adv. Matter., J. Am. Chem. Soc. 等;现在主持及主研国家,省部级,市校级各类基金项目十余项,项目金额总额超过6500万元,其中课题组经费近1800万元。作为评审专家审核国家自然科学基金项目以及广东省、深圳市各类科技类基金项目,是Nano Lett,ACS Nano,Adv. Mater. 等期刊的长期审稿人,Elsevier – Journal of Science: Advanced Materials and Devices' 编委。

       

      学习经历
      博士(2004.09-2009.07) 纳米科学技术 香港科技大学
      硕士(2002.09-2004.07) 凝聚态物理学 物理系, 华中师范大学
      本科(1998.09-2002.07) 物理学 (国家基地班) 物理系, 华中师范大学

       

      科研工作经历
      2013.6-至今 副教授, 材料科学与工程系, 南方科技大学
      2011.5-2013.3博士后雇员, 加州大学伯克利分校 &劳伦斯伯克利国家实验室材料科学分部
      导师: 吴军桥教授和Costas P. Grigoropoulos教授
      2009.9-2011.4 博士后研究员, 物理系, 香港科技大学 导师:王宁教授
      2006.9-2009.8 研究助理, 物理系, 香港科技大学 导师:王宁教授

       

      获奖情况及人才培养资助
      南方科技大学第一届青年教师教学竞赛优秀奖 ,2016年
      南方科技大学“青年科研奖”,2016年
      深圳市“师德标兵”(南方科技大学提名推荐),2016年
      Elsevier 出版社 “Valued Reviewer” Elsevier Reviewer Recognition,2015年
      广东省“杰出青年”人才培养计划项目资助, 2015.7.12
      广东省“优秀青年教师” 人才培养计划项目资助, 2015.12.9
      广东特支计划“科技创新青年拔尖人才”, 2015年
      深圳市高层次海外引进人才“孔雀计划”B类,2013年
      首届深龙创业星?训练营 唯一“优秀小组”称号,2015年
      广东省教育厅认定,获得“教师资格证书”, 2014年
      南方科技大学“招生工作先进个人”,2015年
      南方科技大学“招生工作优秀集体二等奖”,2014,2015年
      南方科技大学“招生工作优秀集体一等奖”,2013年
      香港科技大学博士研究生全额奖学金, 2004-2009年
      湖北省优秀硕士毕业论文, 2004年
      华中师范大学优秀毕业生, 2004年
      华中师范大学研究生一等奖学金, 2002-2003, 2003-2004年
      湖北省大学生优秀研究成果一等奖, 2001年

       

      研究兴趣
      课题组目前主要研究方向包括智能材料、能源材料、二维无机柔性电子材料与器件等。主要包括:1)基于二氧化钒微纳材料相变的智能材料与结构:智能材料的制备、响应特性调节及特色应用如近场功率计、微型制动器、红外探测器、智能玻璃等; 2)能源材料:先进微纳功能材料在光分解水制氢、储能材料(锂离子电池及超级电容器)以及智能窗户节能材料等方面的应用;新型钙钛矿太阳能电池的研发与产业化; 3)二维材料:无机二维材料的规模制备(大面积单晶、层数可控、异质结构、低温柔性衬底直接生长等)、连续绿色转移技术及器件应用。近5年发表SCI论文30余篇, 系列工作被美国劳伦斯国家实验室LBNL NEWs Center高度评价,并被多家著名的网络科技媒体如Science Daily, PHYS.ORG, Materials Views, Materials360online等广泛报道,展现出年轻科研工作者优秀的科研水平和发展潜力。

       

      代表性论文
      1) J. Wu, R. Shi; B. N Chandrashekar, Z. Zhu, A. Wang, C. Cheng, B. Xu*, H. Zhang* Nano-wire interlaced structured vanadium oxide and nano silicon composite as anode for advanced lithium ion battery, Electrochemistry Communications, 2017, reviewing
      2) Phosphorous doped graphitic-C3N4 hierarchical architecture for hydrogen production from water under visible light, Linfei Zhang#, Yi Zhang#, Run Shi, Shuhan Bao, Jingwei Wang, Abbas Amini, Bananakere Nanjegowda Chandrashekar, Chun Cheng* Materials Today Energy, 5 (2017) 91-98
      3) A. Hezam, K. Namratha, Q.A. Drmosh, B. N. Chandrashekar, Z. Yemani , C. Cheng * and K. Byrappa,*Heterogeneous Growth Mechanism of Zinc Oxide Flower-Like Structures and their Morphology Effect on Optical and Photocatalytic Properties, CrystEngComm,accepted
      4) Liu, Chang; Ding, Wenhui; Zhou, Xianyong; Gao, Jishu; Cheng, Chun; Zhao, Xing-Zhong; Xu, Baomin*, Efficient and Stable Perovskite Solar Cells Prepared in Ambient Air Based on Surface-Modified Perovskite, J. Phys. Chem. C, 121(2017), 6546?6553 2017-03-09
      5) K. Sadri, A. Amini*, C. Cheng, A new numerical method for delay and advanced integro-differential equations, Numerical Algorithms, (2017) 1-32 2017-04-05
      6) K. Sadri, A. Amini*, C. Cheng, Low cost numerical solution for three-dimensional linear and nonlinear integral equations via three-dimensional Jacobi polynomials, Journal of Computational and Applied Mathematics, 319(2017), 493–513 2017-08-01
      7) B.N. Chandrashekar, B.E. Kumara Swamy*, K.J. Gururaj, and C. Cheng, Simultaneous Determination of Epinephrine, Ascorbic acid and Folic acid using TX-100 Immobilized Modified Carbon Paste Electrode: A Cyclic Voltammetric Study, Journal of Molecular Liquids, 231 (2017) 379–385 2017-04-01
      8) X. Yang, L.Hu, H. Deng, K. Qiao, C. Hu, Z. Liu, S. Yuan, J. Khan, D. Li, J. Tang, C. Cheng *, Haisheng Song* Improving the Performance of PbS Quantum Dot Solar Cells by Optimizing ZnO Window Layer, Nano-Micro Letters, 9 (2017) 24, pp 1-10 2017-01-04
      9) G. Zhang, J. Wang, Z. Wu, R. Shi, W. Ouyang, A. Amini, B.N. Chandrashekar, N. Wang and C. Cheng*, Shape-Dependent Defect Structures in Monolayer MoS2 Crystals Grown by Chemical Vapor Deposition, ACS Appl. Mater. Interfaces, 2017, 9 (1), pp 763–770 2016-12-08
      10) S. Xu, Z. Wu, H. Lu, Y. Han, G. Long, X. Chen, T. Han, W. Ye, Y. WU, J. Lin, J. Shen, Y. Cai, Y. He, F. Zhang, R. Lortz, C. Cheng and N. Wang *, Universal low-temperature Ohmic contacts for quantum transport in transition metal dichalcogenides, 2D Mater.3 (2016)021007. 2016-04-22
      11) L. Zhang, M. Yang, Z. Wu, A. Amini, W. Cao, J. Feng, X. Fan,R. Shi, C. Huang, Z. Lu, N. Wang and C. Cheng* Carbon-coated V2O5/SnO2-x Nanocomposites as Multifunctional Materials for High Performance Lithium-ion Batteries and Visible-light Photocatalysts, Scientific Reports, 6 (2016) 33597 2016-09-28
      12) Y. Wu, X. Chen, Z. Wu, S. Xu, T. Han, J. Lin, B. Skinner, Y. Cai, Y. He, C. Cheng, and Ning Wang*, Negative compressibility in graphene-terminated black phosphorus heterostructures, Phys. Rev. B 93 (2016) 035455 2016-01-29
      13) Y. Shi, S. H. Bao, R. Shi, C. Z. Huang, A. Amini, Z. F. Wu, L. F. Zhang, N. Wang and C. Cheng*, Y-shaped ZnO Nanobelts Driven from Twinned Dislocations Scientific Reports, 6 (2016) 22494 2016-03-01
      14) R. Shi, C. Huang, L. Zhang, A. Amini, K. Liu, Y. Shi, S. Bao, N. Wang, C. Cheng*, Three Dimensional Sculpturing of Vertical Nanowire Arrays by Conventional Photolithography Scientific Reports, 6 (2016)18886 2016-01-05
      15) Z. Wu, Y. Guo, Y. Guo, R. Huang, S. Xu, J. Song, H. Lu, Z. Lin, Y. Han, H. Li, T. Han, J. Lin, Y. Wu, G. Long, Y. Cai, C. Cheng, D. Su, J. Robertson, and N. Wang, A fast transfer-free synthesis of high-quality monolayer graphene on insulating substrates by a simple rapid thermal treatment. Nanoscale, 8 (2016) 2594-2600 2015-10-09
      16) C. Huang, R. Shi, A. Amini, Z. Wu, S. Xu, L. Zhang, W. Cao, J. Feng, H. Song, Y. Shi, N. Wang and C. Cheng*, Hierarchical ZnO Nanostructures with Blooming Flowers Driven by Screw Dislocations Scientific Reports, 5 (2015) 8266
      17) H. Guo, M. I. Khan, C. Cheng, W. Fan, C. Dames, J. Wu and A. M. Minor*, VO2 nanowire-based microthermometer for quantitative evaluation of electron beam heating, Nature Communication 5 (2015) 4986
      18) C. Cheng, D. Fu, K. Liu, H. Guo, S. Xu, S. Ryu, O. Ho, J. Zhou, W. Fan, W. Bao, M. Salmeron, N. Wang, C. P. Grigoropoulos, and J. Wu*, Directly metering light absorption and heat transfer in single nanowires using metal-insulator transition, Adv. Opt. Mater., 3(2015)336(Highlighted by MaterialsViews)
      19) A. Amini*, C. Yang, C. Cheng, M. Naebe and Y. Xiang, Nanoscale variation in energy dissipation in austenitic shape memory alloys in ultimate loading cycles, Journal of Intelligent Material Systems and Structures, (2014) 1-7
      20) C. Cheng*, H. Guo, A. Amini, K. Liu, D. Fu, J. Zou, H. Song, Self-assembly and horizontal orientation growth of VO2 nanowires, Scientific Reports, 4 (2014) 5456
      21) C. Cheng*, A. Amini, C. Zhu, Z. Xu, H. Song, N. Wang*, Enhanced photocatalytic performance of TiO2-ZnO hybrid nanostructures, Scientific Reports, 4 (2014)4181,ESI highly cited paper
      22) A. Amini*, C. Cheng*, Q. Kan, M. Naebe, H. Song, Phase Transformation Evolution in NiTi Shape Memory Alloy under Cyclic Nanoindentation Loadings at Dissimilar Rates., Scientific Reports, 3 (2013) 3412 (Co-corresponding author)
      23) K. Liu, C. Cheng, J. Suh, R. Tang-Kong, D.Fu, S. Lee, J. Zhou, L. O. Chua, J. Wu, Powerful, Multifunctional Torsional Micro Muscles Activated by Phase Transition, Adv. Mater., (2014), 26, 1746.
      (News release “A Micro-Muscular Break Through” in BERKELEY LAB News Center, also featured in DOE and NSF websites)
      24) P. Parikh, C. Chakraborty, A. Sebastian, S. Sengupta, C. Cheng, J. Wu, MM Deshmukh, Dynamically tracking the strain across the metal-insulator transition in VO2 measured using electromechanical resonators, Nano Lett. 13 (2013) 4685
      25) A. Amini*, C. Cheng*, Nature of hardness evolution in nanocrystalline NiTi shape memory alloys during solid-state phase transition, Scientific Reports 3 (2013) 2476 (Co-corresponding author)
      26) A. Amini, C. Cheng, M. Naebe, JS Church, N. Hameed, A. Asgari, F. Will, Temperature variations at nano-scale level in phase transformed nanocrystalline NiTi shape memory alloys adjacent to graphene layers, Nanoscale, 5, (2013), 6479
      27) A Amini, C Cheng, A Asgari, Combinational rate effects on the performance of nano-grained pseudoelastic Nitinols, Mater. Lett. 105 (2013) 98
      28) S Lee, C. Cheng, H. Guo, K. Hippalgaonkar, K. Wang, J. Suh, K. Liu, J. Wu, Axially engineered metal-insulator phase transition by graded doping vo2 nanowires, J. Am. Chem. Soc. 135 (2013) 4850
      29) S. Xu, C. Cheng, W. Guo, Y. He, R. Huang, S. Du, N. Wang, Tuning the optical and electrical properties of hydrothermally grown ZnO nanowires by sealed post annealing treatment, Solid State Communications, 160, (2013) 41
      30) Q. Hu*, C. Cheng*, W. Qin, Y.Q. Liu, S. Xu, B.Z. Tang, N. Wang, N. Li, Ni-NTA-coated nanowire materials for protein enrichment and the application in a medical device used for blood glucose degradation, NANO, 8, (2013) 1350029 (co-first author)
      31) A Amini, N Hameed, JS Church, C Cheng, A Asgari, F Will,Effect of graphene layers on the thermomechanical behaviour of a NiTi shape memory alloy during the nanoscale phase transition, Scripta Materialia, 68, (2013) 420
      32) K. X. Wang, C. Cheng, E. Cardona, J. Guan, K. Liu, J. Wu, Performance Limits of Microactuation with Vanadium Dioxide as a Solid Engine, Acs Nano, 7 (2013) 2266
      33) D. Fu*, K. Liu*, T. Tao, K. Lo, C. Cheng, B. Liu, R. Zhang, H. Bechtel, J. Wu, A Systematic, Comprehensive Study of Metal-Insulator Transition in Pulsed Laser Deposited Epitaxial VO2 Thin Films, J. Appl. Phys., 113, (2013) 043707
      34) C. Zhu, Y. Shi, C. Cheng, L. Wang, K. K. Fung, and N. Wang, Correlation between the morphology and performance enhancement of zno hierarchical flower photoanodes in quasi-solid dye-sensitized solar cells, J. Nanomater. (2012) 212653
      35) K. Liu, C. Cheng, Z. Cheng, K. Wang, R. Ramesh, J. Wu, Giant-Amplitude, High-Work Density Microactuators with Phase Transition Activated Nanolayer Bimorphs, Nano Lett., 12, (2012) 6302
      (News release “Flexing fingers for micro-robotics” in BERKELEY LAB News Center, also featured in DOE and NSF websites)
      36) K. Liu, D. Fu, J. Cao, J. Suh, K. X. Wang, C. Cheng, D. F. Ogletree, H. Guo, S. Sengupta, A.Khan, C. W. Yeung, S. Salahuddin, M. M. Deshmukh, J. Wu, Dense Electron System from Gate-Controlled Surface Metal-Insulator Transition, Nano Lett., 12, (2012) 6272
      37) J. Zhou, M. Trassin, Qi. He, N. Tamura, M. Kunz, C. Cheng, J. Zhang, W. Liang, J. Seidel, C. Hsin, and J. Wu, Directed Assembly of Nano-scale Phase Variants in Highly Strained BiFeO3 Thin Films, J. Appl. Phys., 112 (2012) 064102.
      38) Y. Shi, C. Zhu, L. Wang, W. Li, C. Cheng, K. M. Ho, K. K. Fung, and N. Wang “Optimizing Nanosheet-based ZnO Hierarchical Structure through Ultrasonic-assisted Precipitation for Remarkable Photovoltaic Enhancement in Quasi-solid Dye-sensitized Solar Cells” J. Mater. Chem. 22 (2012)13097
      39) C. Cheng, K. Liu, B. Liu, J. Suh and J. Wu “Ultra-long, free-standing, single-crystalline vanadium dioxide micro/nanowires grown by simple thermal evaporation” Appl. Phys. Lett. 100 (2012) 103111
      40) C. Cheng, W. Fan, J. Cao, S.G. Ryu, J. Ji, G. P. Grigoropoulos and J. Wu “Heat Transfer across the Interface between Nanoscale Solids and Gas” ACS Nano 5 (2011) 10102
      41) C. Zhu, C. Cheng, Y.H. He, Lin W, T.L. Wong, K.K. Fung and N. Wang “A self-entanglement mechanism for continuous pulling of carbon nanotube yarns” Carbon 49 (2011) 4996
      42) C. Cheng, T.L. Wong, W. Le, C. Zhu, S.G. Xu, L. Wang, K. K. Fung, and N. Wang “Carbon-assisted nucleation and vertical growth of high-quality ZnO nanowire arrays” AIP Advances 1 (2011) 032104 Top 2 Most downloaded paper in Sept. 2011 and highlighted
      43) C. Cheng, Y. Shi, C. Zhu, W. Li, L. Wang, K. K. Fung and N. Wang “ZnO Hierarchical Structures for Efficient Quasi-solid Dye-sensitized Solar Cells”, Phys. Chem. Chem. Phys. 13 (2011)10631
      44) T. L. Wong, G. W. She, C. Cheng, W. Li, W. S. Shi, X. H. Zhang, and N. Wang, “Fabrication and structure characterization of Te butterfly nanostructures”, J. Nanosci. Nanotech. 11 (2011) 11037
      45) C. Cheng, W. Li, T. L. Wang, K. M. Ho, and N. Wang, “Zn2TiO4/ZnO Axial Nanowire Heterostructures by Unilateral Diffusion” J. Phys. Chem. C 115 (2011) 78
      46) H. S. Song, W. J. Zhang, C. Cheng, Y. B. Tang,L. B. Luo, X. Chen,C. Y. Luan, X. M. Meng, J. A. Zapien, N. Wang, C. S. Lee, I. Bello, and S. T. Lee “Controllable Fabrication of Three-Dimensional Radial ZnO Nanowire/Silicon Microrod Hybrid Architectures” Crystal Growth & Design 11, (2011) 147
      47) B. D. Yao , L. Feng , C. Cheng , M. M. T. Loy,and N. Wang, “Tailoring the Luminescence Emission of ZnO Nanostructures by Hydrothermal Post-Treatment in Water” Appl. Phys. Lett. 96, (2010) 223105
      48) C. Cheng, T. L. Wang, L. Feng, W. Li, K. M. Ho, M. M. T. Loy, K. K. Fung and N. Wang “Vertically Aligned ZnO/Amorphous-Si Core-shell Heterojunction Nanowire Arrays”, Nanotechnology 21 (2010) 475703
      49) T. L. Wong, C. Cheng, W. Li, K. K. Fung and N. Wang, “Nano Structural Transformation and Formation of Heterojunctions from Si Nanowires” ACS Nano 10 (2010) 5559
      50) C. Cheng, M. Lei, L. Feng, T. L. Wong, K. M. Ho, K. K. Fung, M. M. T. Loy, D. Yu, and N. Wang, “High-Quality ZnO Nanowire Arrays Directly Fabricated from Photoresists”, ACS Nano 3 (2009) 53
      51) C. D. Gu, C. Cheng, H. Huang, T. L. Wang, N. Wang, and T. Y. Zhang, “Growth and Photocatalytic Activity of Dendrite-like ZnO@Ag Heterostructure Nanocrystals”, Crystal Growth & Design 9 (2009) 3278
      52) L Feng, C. Cheng, B. D. Yao, N. Wang and M. M. T. Loy “Photoluminescence Study of Single ZnO Nanostructures: Size Effect”, Appl. Phys. Lett. 95 (2009) 053113 Top 6 most downloaded paper in Aug. 2009
      53) L. Feng, C. Cheng, M. Lei, N. Wang, and M. M. T. Loy “Spatially Resolved Photoluminescence Study of Single ZnO Tetrapods”, Nanotechnology 19 (2008) 405702
      54) C. Cheng, R. Xin, Y. Leng, D. Yu, and N. Wang, “Chemical Stability of ZnO Nanostructures in Simulated Physiological Environments and Its Application in Determining Polar Directions”, Inorg. Chem. 47 (2008) 7868
      55) C. Cheng, and N. Wang, “Synthesis, Characterization and Growth Mechanism of ZnO/TiO2 Nanohybrid Arrays”, Mater. Res. Soc. Symp. Proc. 1035 (2008) 1035-L02-11
      56) C. Cheng, K. F. Yu, Y. Cai, K. K. Fung, and N. Wang, “Site-Specific Deposition of Titanium Oxide on Zinc Oxide Nanorods” J. Phys. Chem. C 111 (2007)16712
      57) J. Ling, C. Cheng*, J. Zhang, Y. Huang, F. J. Shi, X. X. Ding, C. Tang, and S. R. Qi, “Controllable Growth of Zinc Oxide Micro- and Nanocrystals by Oxidization of Zn-Cu Alloy”, J. Solid State Chem. 178 (2005) 819 Corresponding author
      58) J. Lin, Y. Huang, X.X. Ding, C. Cheng, C. Tang, and S. R. Qi, “Metal Oxide Coating on Carbon Nanotubes by a Methanol-Thermal Method”, J. Nanosci. Nanotech. 5 (2005) 932
      59) C. Cheng, X.X. Ding, F.J. Shi, Y. Cheng, X.T. Huang, S. R. Qi, C. Tang “Preparation of Aluminum Borate Nanowires” J. Crystal Growth. 263 (2004) 600
      60) C. Cheng, F. J Shi, Y. Cheng, X. X Ding, C.C. Tang, S. R Qi “The Effects of Samarium-Doping Catalyst on the Growth of Carbon Nanotubes” Huazhong Shifan Daxue Xuebao (Ziran Kexue Ban) 38 (2004) 36
      61) F.J Shi, C. Cheng, X.X Ding, S.R Qi, C. Tang “Catalytic Synthesis of Bamboo-Shaped Carbon Nanotubes by Ferrocene” Huazhong Shifan Daxue Xuebao (Ziran Kexue Ban) 38 (2004) 40
      62) Z. W. Gan, X. X. Ding, Z. X. Huang, X. T. Huang, C. Cheng, C. Tang, and S. R. Qi “Growth of Boron Nitride Nanotube Film in Situ” Appl. Phys. A 81 (2004) 527
      63) X. X. Ding, Z. X. Huang, X.T. Huang, Z.W. Gan, C. Cheng, C. Tang, and S.R. Qi “Synthesis of Gallium Borate Nanowires” J. Crystal Growth. 263 (2004) 504
      64) C. Cheng, C. Tang , X.X. Ding , X.T. Huang, Z.X. Huang, S.R. Qi, Long Hu, and Y.X. Li “Catalytic Synthesis of Aluminum Borate Nanowires” Chem. Phys. Lett. 373 (2003) 626

       

       

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