[1] Nan Xiang, Ke Chen, Sun Dong Ke, Wang Shan Fang, Yi Hong, Ni Zhong Hua*, Quantitative characterization of the focusing process and dynamic behavior of differently sized microparticles in a spiral microchannel, Microfluidics and Nanofluidics, 14(1): 89-99, 2013, (SCI, IF=)[2] Xiang Nan, Yi Hong, Chen Ke, Wang Shan Fang,Ni Zhong Hua*. Investigation of the maskless lithography technique for the rapid and cost-effective prototyping of microfluidic devices in laboratories. Journal of Micromechanics and Microengineering, 23(2):025016, 2013, (SCI, IF=)[3] Zhu Xiao Lu, Yin Zhi Feng, Ni Zhong Hua*, Dynamics simulation of positioning and assembling multi-microparticles utilizing optoelectronic tweezers, Microfluidics and Nanofluidics, 12(1): 529-544, 2012, (SCI, IF=)[4] Wei Zhi Yong, Ni Zhong Hua, Bi Ke Dong, Chen Min Hua, Chen Yun Fei, In-plane lattice thermal conductivities of multilayer graphene films, Carbon, 49(8): 2653-2658, 2011, (SCI, IF=)[5] Sha Jing Jie, Ni Zhong Hua*, Liu Lei, Yi Hong, Chen Yun Fe, A novel method of fabricating a nanopore based on a glass tube for single-molecule detection, Nanotechnology, 22(17): 175304, 2011 , (SCI, IF=)[6] Wang Zan,Ni Zhong Hua*, Zhao Rui Jie, Chen Min Hua, Bi Ke Dong, Chen Yun Fei, The effect of surface roughness on lattice thermal conductivity of silicon nanowires, Physica B-Condensed Matter, 406(13): 2515-2520, 2011, (SCI, IF=)[7] Ni Zhong Hua*, Zu Shu Cun, Chen Ke, Light-induced electro-rotation: Microspheres spin in micro-manipulation using light-induced dielectrophoresis, Science China-Technological Sciences, 54(11): 3035-3046, 2011, (SCI, IF=)[8] Yi Hong, Huang Jie, Gu Xing Zhong, Ni Zhong Hua*, Study on ultrasonic spray technology for the coating of vascular stent , Science China-Technological Sciences, 54(12): 3358-3370, 2011 , (SCI, IF=)[9] Zhu Xiao Lu, Yi Hong, Ni Zhong Hua*, Frequency-dependent behaviors of individual microscopic particles in an optically induced dielectrophoresis device, Biomicrofluidics,4(1): 013202 , 2010, (SCI, IF=)[10] Zhu Xiao Lu, Gao Zhi Qiang, Yin Zhi Feng, Ni Zhong Hua*, Electrode-rail dielectrophoretic assembly effect: formation ofsingle curvilinear particle-chains on spiral microelectrodes, Microfluidics and Nanofluidics,9(4-5): 981-988, 2010, (SCI, IF=)[11] Liu Lei, Hu Yuan, Song Lei, Gu Xing Zhong, Chen Yun Fei, Ni Zhong Hua*, Mesoporous hybrid from anionic polyhedraloligomeric silsesquioxanes (POSS) and cationic surfactant by hydrothermal approach, Microporous and Mesoporous Materials, 132(3): 567-571, 2010, (SCI, IF=)[12] Ni Zhong Hua, Bu Hao, Zou Min, Yi Hong, Bi Ke Dong, Chen Yun Fei, Anisotropic mechanical properties of graphenesheets from molecular dynamics, Physica B-Condensed Matter,405(5): 1301-1306, 2010, (SCI, IF=)[13] Zhu Xiao Lu, Yin Zhi Feng, Gao Zhi Qiang, Ni Zhong Hua*, Experimental study on filtering, transporting, concentrating and focusing of microparticles based on optically induced dielectrophoresis, Science China-Technological Sciences, 53(9): 2388-2396, 2010, (SCI, IF=)[14]NI ZhongHua, ZHANG XinJie. Molecular dynamics simulation for aggregation phenomenaof nanocolloids. 《Science in China, E》, 52(2): 484-490,2009(SCI收录)[15]NI ZhongHua, GU XingZhong & WANG YueXuan. Rapid prediction method for nonlinearexpansion process of medical vascular stent. 《Science in China, E》, 52(2): 1-8,2009(SCI收录)[16]NI ZhongHua, ZHANG XinJie,YI Hong. Separation of nanocolloids driven bydielectrophoresis: A molecular dynamics simulatio. 《Science in China, E》(录用,等待发表)[17]NI ZhongHua, ZHANG XinJie. Research on Critical Technology of Micro/Nano Bio-particles Manipulation Platform Based on Light-induced Dielectrophoresis.《Science inChina, E》(录用,等待发表)[18]Yunfei Chen, Zhonghua Ni, Guiming Wang. “Electroosmotic Flow in Nanotubes with Highsurface Charge Densities”, Nano Letters, 8(1), 42-48, 2008. (SCI收录,影响引子)[19] Yunfei Chen, Deyu Li, Jennifer R. Lukes, Zhonghua Ni, Minhua Chen, Minimum thermalconductivity from Molecular Dynamics, Physical Review B, 72(17), 174302_(1-6),2005.(SCI检索)[20] 倪中华*, 张鑫杰. 纳米胶体团聚现象的分子动力学模拟.《中国科学, E》,39(1),1-7, 2009.(EI检索)[21] 倪中华,顾兴中,王跃轩. 医用血管支架非线性扩张过程快速预测方法的研究,《中国科学, E》,, P1016-1025. 2008. (EI检索)[22] 倪中华,易红,朱树存.基于光诱导介电泳的微纳米生物粒子操纵平台关键技术的研究.《中国科学, E》(录用,等待发表)[23]倪中华, 张鑫杰. 介电泳驱动纳米胶体分离的分子动力学模拟.《中国科学, E》(录用,等待发表)[24] 倪中华,易 红,顾兴中, 载药纳米颗粒与血管支架自装配机理和方法. 机械工程学报, , , P190-P194. (EI检索)[25] 倪中华,王跃轩, 程洁. 球囊扩张式冠脉支架扩张变形机理数值模拟方法. 机械工程学报,2008, 44 (1):102-108. (EI检索)[26] 倪中华,朱树存, 基于介电泳的生物粒子分离芯片, 东南大学学报, 2005. , .(EI检索)[27] 倪中华,顾兴中,王跃轩. 微观作用力驱动的纳米颗粒自装配技术, 微纳电子技术, , (总329期), P18-P23(EI检索)[28] 倪中华,易 红,王跃轩,顾兴中, 预防心血管再狭窄纳米载药涂层支架的研究, 东南大学学报,2004. , , P789-P793. (EI.检索)[29] Y. Chen, D. Li, J. R. Lukes, and Zhonghua. Ni. Monte Carlo Simulation of ThermalConductivities of Silicon Nanowires, Proceedings of the 2005 Summer Heat TransferConference, San Francisco, California, HT2005-72377,2005. (EI检索)[30] Y. Chen, D. Li, J. Yang, Zhonghua. Ni, and J. R. Lukes, Interface Effect onLattice Thermal Conductivities of Superlattice Nanowires Proceedings of the 2004International Mechanical Engineering Congress and Exposition, Anaheim, California,IMECE 2004 -59149,2004. (EI检索)[31]Wang YueXuan, Yi hong, Ni ZhongHua. Computational Biomechanics and ExperimentalVerification of Vascular Stent. International Conference on Computational Intelligenceand Security. Springer: Lecture Notes in Artificial Intelligence, 2005,P870-877. (SCI和EI检索)[32]Wang YueXuan, Yi hong, Ni ZhongHua. Experimental Research on Balloon-expandableEndovascular Stent Expansion. 27th Annual International Conference of the IEEEEngineering in Medicine and Biology Society. Shanghai: IEEE-EMBS, 2005,shanghai china(EI检索)[33] Chen Gong, Yi hong, Ni ZhongHua. IGES Interface for Medical 3-D Volume Data. IEEEEngineering in Medicine and Biology Society. Shanghai: IEEE-EMBS, 2005,shanghai china.(EI检索)[34] Chen Gong, Yi hong, Ni ZhongHua. MIPP: A Web-based Medical Image Processing Systemfor Stent Design and International Conference on Services Systemsand Services Managemen,2005.6.P:1484-148813-15,chongqing china. (EI检索)[35]陈功,易红,倪中华. 基于逆向工程的医学器官有限元建模方法的研究. 机械工程学报,2006. VOL42, NO1, P139-145. (EI检索)[36]顾兴中、易红,倪中华. 冠状动脉支架研究. 中国生物医学工程学报,2005 .6:662-667(EI检索)[37]张鑫杰,倪中华*.纳米粒子介电泳的分子动力学模拟,东南大学学报(自然科学版),, P884-888. (EI检索)[38] 王跃轩,易红,倪中华. 医用血管支架生物力学性能分析方法研究. 东南大学学报自然科学版.2005,35(2):216-221(EI检索)[39] 王跃轩,易红,倪中华. 机器视觉系统中图像误差补偿方法研究. 数据采集与处理.2005,20(4):472-477. (EI检索)[40] 倪中华,江 勇. 面向网络化制造的动态自组织制造资源模型的研究. 中国机械工程. , , P1823-P1826.(EI)[41] Ni Zhonghua, Jiang Yong. RESEARCH ON DYNAMIC MANUFACTURING RESOURCES MODEL ANDMARKUP LANGUAGES FOR NETWORKED MANUFACTURING. INTEGRATED DESIGN & PROCESS TECHNOLOGY(IDPT) ,2005. ,P50-P50. (EI)[42] 倪中华,江 勇,王 伟. 面向产品生命链过程的信息集成平台. 东南大学学报. , , P533-P537. (EI)[43] 孟秀丽,易 红,倪中华,刘 英. 基于对策论的协同设计目标冲突协商方法的研究. 中国机械工程. , P2190-2194. (EI)[44] 倪晓宇,易 红,倪中华,汤文成. 基于虚拟机的B/S协同系统的设计. 计算机集成制造系统., P157-162. (EI)[45] 孟秀丽,易 红,倪中华,刘 英. 基于约束的协同设计冲突检测技术研究. 计算机集成制造系统. . P1426-1431. (EI)[46] 倪晓宇,汤文成,倪中华. 基于Web的协同CAE系统及关键技术的研究. 计算机集成制造系统.2004. , , P51-P55. (EI)[47] 谢军翌,汤文成,倪中华. 基于多代理机制的车间制造资源调度管理系统的研究. 计算机集成制造系统, 2005. , , P805-P809. (EI)[48] 孟秀丽,易红,倪中华,王伟. 基于模糊评价的协同设计冲突仲裁技术研究. 计算机集成制造系统. 3, P400-404. (EI)[49] 倪晓宇,汤文成,倪中华. 基于Web的机床组件协同分析和优化环境. 机械设计. 2004. , P15-P17..[50] 倪晓宇,易 红,倪中华,汤文成. 机床组件有限元分析前处理专家系统研究. 东南大学学报.2005. , , P211-P215. (EI)