Publications in 2006-2010
- Y. Cai, S. K. Chan, I. K. Sou, Y. F. Chan, D. S. Su and N. Wang , “The size-dependent growth direction of ZnSe nanowires”, Adv. Mater. 18 (2006) 109-114.
- S. K. Chan, Y. Cai, N. Wang, and I. K. Sou, “Control of growth orientation for epitaxially grown ZnSe nanowires”,Appl. Phys. Lett., 88 (2006)13108.
- J. Y. Miao, Y. Cai, Y. F. Chan, P. Sheng, and N. Wang, “A Novel Carbon Nanotube Structure Formed in Ultra-Long Nanochannels of Anodic Aluminum Oxide Templates”, J. Phys. Chem., 110 (2006)2080 -2083.
- R.L. Xin, Y. Leng and N. Wang, "In Situ TEM Examinations of Octacalcium Phosphate to Hydroxyapatite Transformation", J. Crystal Growth 289 (2006) 339-344.
- R.L. Xin, Y. Leng, N. Wang, “TEM examinations of OCP/HA transformation”, Bioceramics, 18, (2006) 191-194.
- Y.G. Wang, B.S. Zou, T.H. Wang, N Wang, Y. Cai, Y.F. Chan, S.X. Zhou, “I-V characteristics of Schottky contacts of semiconducting ZnSe nanowires and gold electrodes”, Nanotechnology 17 (2006) 2420-2423.
- B.M. Shi, M.H. Xie, H.S. Wu, N. Wang and S.Y. Tong, “Transition between wurtzite and zinc-blende GaN: An effect of deposition condition of molecular-beam epitaxy”, Appl. Phys. Lett., 89 (2006) 151921.
- X.Y. Zhang, L.H. Xu, J.Y. Dai, Y.Cai, N. Wang, “Synthesis and characterization of single crystalline selenium nanowire arrays”, Mater. Res. Bull. 41 (2006)1729-1734.
- K.S. Chan, N. Liu, Y. Cai, N. Wang, G.K.L Wong, I.K. Sou, “Molecular beam epitaxy-grown ZnSe nanowires”, J. Electro. Mater. 35 (2006)1246-50.
- Y. Cai, S.K. Chan, I.K. Sou, Y.T. Chan, D.S. Sou and N. Wang, “Temperature-dependent growth direction of ultrathin ZnSe nanowires”, Small 3 (2007)111-115.
- X.Q. Zhang, J.T. Ye, H.W. Yang, C. Zhang, K.M. Ho, T. Su, N. Wang, Z.K. Tang, X.D. Xiao, “Imaging 0.4nm single-walled carbon nanotubes with atomic force microscopy”, Surf. Rev. Lett., 14 (2007) 687-692.
- C. Cheng, K.F. Yu, Y. Cai, K.K. Fung, N. Wang, “Site-specific deposition of titanium oxide on zinc oxide nanorods”, J. Phys. Chem. C 111 (2007)16712-16716.
- L.J. Zhao, Q. Pang, Y. Cai, N. Wang, W.K. Ge, J. N. Wang and S.H. Yang, “Vertically aligned zinc selenide nanoribbon arrays: microstructure and field emission”, J. Phys. D 40 (2007) 3587-3591.
- S.K. Chan, Y. Cai, N. Wang, I.K. Sou, “Growth temperature dependence of MBE-grown ZnSe nanowires”, J. Cryst. Grow. 301(2007) 866-870.
- J.Y. Miao, Z.L. Xu, X.Y. Zhang, N. Wang, Z.Y. Yang, P. Sheng, “Micropumps Based on the Enhanced Electroosmotic Effect of Aluminum Oxide Membranes”, Adv. Mater. 19 (2007) 4234 – 4237.
- N. Wang, Y. Cai, R.Q. Zhang, “Growth of Nanowires”, Mater. Sci. Eng. R60 (2008)1-51.
- W. Zheng, Y.F. Zheng, K.W. Jin, N. Wang, “Direct electrochemistry and electrocatalysis of hemoglobin immobilized in TiO2 nanotube films”, Talnta 74 (2008)1414-19.
- Y.G. Wang, B.S. Zuo, T.H. Wang, N. Wang, Z.C. Luo, D.R. Li, S.X. Zhou, “Synthesis and characterization of hydrocarbon coating prepared by in situ electron beam deposition on ZnSe nanowire”, J. Phys. Chem. C112 (2008)7572-7578.
- Y. Liu, Y. Cai, L. Zhang, M. H. Xie, N. Wang, S. B. Zhang, and H. S. Wu, “Dislocation network at InN/GaN interface revealed by scanning tunneling microscopy”, Appl. Phys. Lett. 92 (2008) 231907
- Guangwei She, Xiaohong Zhang, Wensheng Shi,Yuan Cai, Ning Wang, Peng Liu, and Dongmin Chen, “Template-Free Electrochemical Synthesis of Single-Crystal CuTe Nanoribbons”, Crystal Grow. Design 8 (2008) 1789-1791.
- S. K. Chan, S. K. Lok, G. Wang, Y. Cai, Y. J. Wang, N. Wang, and I. K. Sou, Appl. Phys. Lett. 92, (2008)183102.
- W. Zheng, H.M. Zho, Y.F. Zheng, N. Wang, Chem. Phys. Lett. 457 (2008)381-385.
- Y. Cai, T. L. Wong, S. K. Chan, I. K. Sou, D. S. Su, N. Wang, Appl. Phys. Lett. 93, (2008) 233107.
- C. Cheng, R. Xin, Y. Leng, D. Yu, N. Wang, “ Chemical Stability of ZnO Nanostructures in Simulated Physiological Environments and Its Application in Determining Polar Directions” Inorg. Chem.47, (2008) 7868-7873
- 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) 53-58.
- 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
- Y. Cheng, T. L. Wong, K. M. Ho and N. Wang, “The Structure and Growth Mechanism of VO2 Nanowires”, J. Cryst. Grow. 311(2008) 1571-1575.
- R. Lortza, Q.C. Zhang, W. Shi, J.T. Ye, et al, “Superconducting characteristics of 4-angstrom carbon nanotube-zeolite composite”, PNAS 106 (2009) 7299-7303.
- X.F. Song, X.B. Han, Q. Fu, J. Xu, N. Wang, D.P. Yu, "Electrical transport measurements of the side-contacts and embedded-end-contacts of platinum leads on the same single-walled carbon nanotubes”, Nanotechnology 20 (2009)195202.
- G.W. She, W.S. Shi, X.H. Zhang, T.L. Wong, Y. Cai, N. Wang, “Template-Free Electrodeposition of One-Dimensional Nanostructures of Tellurium”, Cryst. Grow. Design 9 (2009) 663-666.
- S.K. Lok, G. Wang, Y. Cai, N. Wang, Y.C. Zhang, S.K. Wong, I.K. Sou, “Growth temperature dependence of the structural and photoluminescence properties of MBE-grown ZnS nanowires”, J. Cryst. Grow 311(2009)2630-2634.
- L. Feng, C. Cheng, B.D. Yao, N. Wang, "Photoluminescence study of single ZnO nanostructures: Size effect", Appl. Phys. Lett. 95 (2009)53113.
- C.D. Gu, C. Cheng, H.Y. Huang, T.L. Wong, N. Wang, T.Y. Zhang, "Growth and Photocatalytic Activity of Dendrite-like ZnO@Ag Heterostructure Nanocrystals", Cryst. Grow & Design 9 (2009)3278-3285.
- X.B. Han, G.Y. Jing, X.Z. Zhang, R.M. Ma, X.F. Song, J. Xu, Z.M. Liao, N.Wang, D.P. Yu, “Bending-Induced Conductance Increase in Individual Semiconductor Nanowires and Nanobelts”, NNANO RESEARCH 2(2009)553-557.
- T.L. Wong, C. Cheng, W. Li, K.K. Fung and N. Wang, “Nanostructural Transformation and Formation of Heterojunctions from Si Nanowires”, ACS Nano 4(2010)5559.
- Baodian Yao, Lin Feng, Chun Cheng, Michael M. T. Loy, and Ning Wang, “Tailoring the luminescence emission of ZnO nanostructures by hydrothermal post-treatment in water”, Appl. Phys. Lett. 96 (2010) 223105.
- Yao Cheng, Ting Zhang, Yuan Cai, Kin Ming Ho, Kwok Kwong Fung, and Ning Wang, “Structure and Metal-to-Insulator Transition of VO2 Nanowires Grown on Sapphire Substrates”, Eur. J. Inorg. Chem. (2010), 4332–4338.
- Z. Y. Wang, B. M. Shi, Y. Cai, N. Wang, and M. H. Xie, “Molecular-beam epitaxy of AlInN: An effect of source flux and temperature on indium atom incorporation in alloys”, J. Appl. Phys. 108, (2010)033503.
- Z. Wang, W. Shi, H. Xie H, T. Zhang T, N. Wang N, Z.K. Tang ZK, X.X. Zhang, R. Lortz, P. Sheng, I. Sheikin, A. Demuer, “Superconducting resistive transition in coupled arrays of 4 angstrom carbon nanotubes”, Phys. Rev. B81 (2010) 174530.
- I.K. Sou, S.K. Lok, G. Wang, N. Wang, G.K.L. Wong, “MBE-Grown II-VI and Related Nanostructures”, J. Electronic Mater. 39 (2010) 882.
- H.D. Li, K. He, M.H. Xie, N. Wang, J.F. Jia, Q.K. Xue, “Surface modification for epitaxial growth of single crystalline cobalt thin films with uniaxial magnetic anisotropy on GaN(0001)-1 x 1 surfaces”, New Journal of Physics 12(2010)073007.
- Chun Cheng, Tai-LunWang, Lin Feng,Wei Li, Kin Ming Ho, Michael M T Loy, Kwok Kwong Fung and NingWang, “Vertically aligned ZnO/amorphous-Si core–shell heterostructured nanowire arrays”, Nanotechnology 21 (2010) 475703.
- H D Li, Z Y Wang, X Kan, X Guo, H T He, Z Wang, J N Wang, T L Wong, N Wang and M H Xie, “The van der Waals epitaxy of Bi2Se3 on the vicinal Si(111) surface: an approach for preparing high-quality thin films of a topological insulator”, New Journal of Physics 12 (2010) 103038.
- Tailun Wong, Guangwei She, Chun Cheng, Wei Li, Wensheng Shi, Xiaohong Zhang, and Ning Wang, “Fabrication and structure characterization of Te butterfly nanostructures”, Journal of Nanoscience and Nanotechnology 11 (2010) 1-4.
- C. Cheng, W. Li, T. L. Wong, K. M. Ho, K. K. Fung, and N. Wang,“Zn2TiO4-ZnO Nanowire Axial Heterostructures Formed by Unilateral Diffusion”J. Chem. Phys, C115(2010) 78.
- Zhe Wang, Wu Shi, Hang Xie, Ting Zhang, Ning Wang, Zikang Tang, Xixiang Zhang, Rolf Lortz, Ping Sheng, "1D goes 2D: A Berezinskii-Kosterlitz-Thouless transition in superconducting arrays of 4-Angstrom carbon nanotubes", PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS 247(2010)2968.