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J. Mater. Sci. Technol. 2006, 22(06) 721-736  DOI:      ISSN: 1005-0302 CN: 21-1315/TG

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Keywords
One-dimensional
ZnS
Nanomaterials
Nanostructures
Authors
Xiaosheng FANG
Lide ZHANG
PubMed
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One-dimensional (1D) ZnS Nanomaterials and Nanostructures

Xiaosheng FANG, Lide ZHANG

Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, P.O.Box 1129, Hefei 230031, China

Abstract

One-dimensional (1D) nanomaterials and nanostructures have received much attention due to their potential interest for understanding fundamental physical concepts and for applications in constructing nanoscale electric and optoelectronic devices. Zinc sulfide (ZnS) is an important semiconductor compound of II-VI group, and the synthesis of 1D ZnS nanomaterials and nanostructures has been of growing interest owing to their promising application in nanoscale optoelectronic devices. This paper reviews the recent progress on 1D ZnS nanomaterials and nanostructures, including nanowires, nanowire arrays, nanorods, nanobelts or nanoribbons, nanocables, and hierarchical nanostructures etc. This article begins with a survey of various methods that have been developed for generating 1D nanomaterials and nanostructures, and then mainly focuses on structures, synthesis, characterization, formation mechanisms and optical property tuning, and luminescence mechanisms of 1D ZnS nanomaterials and nanostructures. Finally, this review concludes with personal views towards future research on 1D ZnS nanomaterials and nanostructures.

Keywords One-dimensional   ZnS   Nanomaterials   Nanostructures   
Received 2006-07-25 Revised 1900-01-01 Online: 2009-10-10 
DOI:
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Corresponding Authors: Xiaosheng FANG
Email: xsfang@issp.ac.cn;ldzhang@issp.ac.cn
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References:
[1]L.D.Zhang, X.S.Fang and C.H.Ye: Controlled Growth of Nanomaterials, World. Scientific Publishing Co, Singapore, 2006, 1.
[2] P.D.Yang, Y.Y.Wu and R.Fan: Int. J. Nanosci, 2002, 1, 1.
[3] A.P.Alivisatos: Science, 1996, 271, 933.
[4]D.Loss and D.P.DiVincenzo: Phys. Rev. A, 1998, 57, 120.
[5] M.Bruchez, M.Moronne, P.Gin, S.Weiss and A.P.Alivisatos: Science, 1998, 281, 2013.
[6] J.Tersoff, C.Teichert and M.G.Lagally: Phys. Rev. Lett, 1996, 76, 1675.
[7] R.P.Andres, J.D.Bielefeld, J.I.Henderson, D.B.Janes, V.R.Kolagunta, C.P.Kubiak, W.J.Mahoney and R.G.Osifchin: Science, 1996, 273, 1690.
[8] D.L.Huber: Small, 2005, 1, 482.
[9]Y.X.Chen, B.L.He and H.F.Liu: J. Mater. Sci. Tech- nol, 2005, 21, 187.
[10] Y.G.Sun and Y.N.Xia: Science, 2002, 298, 2176.
[11] S.Iijima: Nature, 1991, 354, 56.
[12] T.W.Ebbesen ami P.M.Ajayan: Nature, 1992, 358, 220.
[13] S.S.Fan, M.G.Chapline, N.R.Franklin, T.W.Tombler, A.M.Cassell and H.J.Dai: Science, 1999, 283, 512.
[14] K.Balasubramanian and M.Burghard: Small, 2005, 1, 180.
[15]L.Q.Guo, C.X.Ma, S.A.Wang, H.Ma and X.Li: J. Mater. Sci. TechnoL, 2005, 21, 123.
[16] X.S.Fang and L.D.Zhang: J. Mater. Sci. TechnoL, 2006, 22, 1.
[17] J.T.Hu, J.T.W.Odom and C.M.Lieber: Accounts Chem. Res, 1999, 32, 435.
[18]L.Miao, S.Tanemura, S.Toh, K.Kaneko and M.Tanemura: J. Mater. Sci. Technol., 2004, 20, 59.
[19]X.S.Fang, C.H.Ye, L.D.Zhang and T.Xie: Adv. Mater., 2005, 17. 1661.
[20] L.Li, Y.Zhang, Y.W.Yang, X.H.Huang, G.H.Li and L.D.Zhang: Appl. Phys. Lett, 2005, 87, 031912.
[21] Z.R.Dai, Z.W.Pan and Z.L.Wang: Adv. Funct. Mater, 2003, 13., 9.
[22]Z.L.Wang: Nanowires and Nanobelts, Vol I, Kluwer Academic, New York, 2003, 3.
[23] M.Law, J.Goldberger and P.D.Yang: Annu. Rev. Mater. Res, 2004, 34, 83.
[24] G.M.Whitesides: Small, 2005, 1, 172.
[25] P.M.Ajayan: Chem. Rev, 1999, 99, 1787.
[26] X.S.Fang, C.H.Ye, L.D.Zhang, Y.Li and Z.D.Xiao: Chem. Lett, 2005, 34, 436.
[27] C.Lopec: Small, 2005, 1, 378.
[28] C.N.R.Rao, F.L.Deepak, G.Gundiah and A.Govindaraj: Prog. Solid. State. Ch, 2003, 31, 5.
[29]Z.L.Wang: J. Phys.-Conden. Mat., 2004, 16, R829.
[30] J.G.Lu, P.Chang and Z.Y.Fan: Mater. Sci. Eng. R, 2006, 52, 49.
[31] Y.N.Xia, P.D.Yang, Y.G.Sun, Y.Y.Wu, B.Mayers, B.Gates, Y.D.Yin, F.Kim and H.Q.Yan: Adv. Mater, 2003, 15, 353.
[32]J.Zhang, Z.Q.Li and J.Xu: J. Mater. Sci. Technol., 2005, 21, 128.
[33] C.H.Ye, G.W.Meng, Z.Jiang, Y.H.Wang, G.Z.Wang and L.D.Zhang: J. Am. Cbem. Soc, 2002, 124, 15180.
[34] G.S.Wu, L.D.Zhang, B.C.Cheng, T.Xie and X.Y.Yuan: J. Am. Cbem. Soc, 2004, 126, 5976.
[35] C.H.Ye, Y.Bando, G.Z.Shen and D.Golberg: Angew. Chem. Int. Enid, 2006, 45, 4922.
[36]H.L.Zhu, D.R.Yang and H.Zhang: J. Mater. Sci. Technol, 2005, 21, 609.
[37] Z.Y.Wang, Q.F.Lu, X.S.Fang, X.K.Tian and L.D.Zhang: Adv. Funct. Mater, 2006, 16, 661.
[38] L.X.Zhao, G.W.Meng, X.S.Peng, X.Y.Zhang and L.D.Zhang: Appl Pbys. A, 2002, 74, 587.
[39] M.Wang, C.H.Ye, Y.Zhang, G.M.Hua, H.X.Wang, M.G.Kong and L.D.Zhang: J. Cryst. Growth, 2006, 291, 334.
[40] X.S.Fang, C.H.Ye, X.X.Xu, T.Xie, Y.C.Wu and L.D.Zhang: J. Phys.-Conden. Mat, 2004, 16, 4157.
[41] A.M.Morales and C.M.Lieber: Science, 1998, 279, 208.
[42] X.Y.Zhang, L.D.Zhang, G.W.Meng, G.H.Li, N.Y.Jin- Phillipp and F.Phillipp: Adv. Mater, 2001, 13, 1238.
[43]B.S.Xu, P.D.Han, J.Liang, Y.Yu, H.Q.Bao and X.G.Liu: J. Mater. Sd. Technol., 2004, 20, 681.
[44] Z.W.Pan, Z.R.Dai and Z.L.Wang: Science, 2001, 291, 1947.
[45]Y.W.Wang, L.D.Zhang, G.W.Meng, C.H.Liang, G.Z.Wang and S.H.Sun: Chem. Commun., 2001, 2632.
[46] C.H.Ye, X.S.Fang, Y.H.Wang, T.Xie, A.W.Zhao and L.D.Zhang: Chem. Lett, 2004, 33, 54.
[47] M.Law, X.F.Zhang, R.Yu, T.Kuykendall and P.D.Yang: Small, 2005, 1, 858.
[48] G.W.Meng, L.D.Zhang, C.M.Mo, S.Y.Zhang, Y.Qin, S.P.Feng and H.J.Li: J. Mater. Res, 1998, 13, 2533.
[49] Y.Li, C.H.Ye, X.S.Fang, L.Yang, Y.H.Xiao and L.D.Zhang: Nanotechnology, 2005, 16, 501.
[50]Q.Lin, L.Z.Yao, G.W.Jiang, C.G.Jin, W.F.Liu, W.L.Cai and Z.Yao: J. Mater. Sci. Tecbnol, 2004, 20, 684.
[51] G.Z.Shen, Y.Bando, C.Y.Zhi, X.L.Yuan, T.Sekiguchi and D.Golberg: Appl. Pbys. Lett, 2006, 88, 243106.
[52] Y.Ding, C.Ma and Z.L.Wang: Adv. Mater, 2004, 16, 1740.
[53] X.S.Fang, C.H.Ye, T.Xie, Z.Y.Wang, J.W.Zhao and L.D.Zhang: Appl. Pbys. Lett, 2006, 88, 013101.
[54] J.S.Hong and R.Q.Wu: Phys. Rev. B, 2004, 70, 060406.
[55] P.M.Gao and Z.L.Wang: Small, 2005, 1, 945.
[56] P.M.Gao, Y.Ding, W.J.Mai, W.L.Hughes, C.S.Lao and Z.L.Wang: Science, 2005, 309, 1700.
[57] C.H.Ye, L.D.Zhang, X.S.Fang, Y.H.Wang, P.Yan and J.W.Zhao: Adv. Mater, 2004, 16, 1019.
[58] C.H.Liang, G.W.Meng, Y.Lei, F.Phillipp and L.D.Zhang: Adv. Mater, 2001, 13, 1330.
[59] C.H.Liang, G.W.Meng, G.Z.Wang, Y.W.Wang, L.D.Zhang and S.Y.Zhang: Appl. Pbys. Lett, 2001, 78, 3202.
[60] X.S.Fang, C.H.Ye, L.D.Zhang, J.X.Zhang, J.W.Zhao and P.Yan: Small, 2005, 1, 422.
[61] X.S.Peng, G.W.Meng, J.Zhang, X.F.Wang, Y.W.Wang, C.Z.Wang and L.D.Zhang: J. Mater. Chem, 2002, 12, 1602.
[62] X.S.Peng, L.D.Zhang, G.W.Meng, Y.T.Tian, Y.Lin, B.Y.Geng and S.H.Sun: J. Appl. Pbys, 2003, 93, 1760.
[63] P.Yan, C.H.Ye, X.S.Fang, J.W.Zhao, Z.Y.Wang and L.D.Zhang: Chem. Lett, 2005, 34, 384.
[64] G.S.Wu, X.Y.Yuan, Y.Li, L.Yang, Y.H.Xiao and L.D.Zhang: Solid State Commun, 2005, 134, 485.
[65] C.H.Ye, X.S.Fang, Y.F.Hao, X.M.Teng and L.D.Zhang: J. Phys. Chem. B, 2005, 109, 19758.
[66] B.C.Cheng, Y.H.Xiao, G.S.Wu and L.D.Zhang: Adv. Funct. Mater, 2004, 14, 913.
[67] B.C.Cheng, Y.H.Xiao, G.S.Wu and L.D.Zhang: Appl. Phys. Lett, 2004, 84, 416.
[68] X.S.Fang, C.H.Ye, X.S.Peng, Y.H.Wang, Y.C.Wu and L.D.Zhang: J. Cryst. Growth, 2004, 263, 263.
[69]Y.W.Wang, L.D.Zhang, G.Z.Wang, X.S.Peng, Z.Q.Chu and C.H.Liang: J. Cryst. Growth, 2001, 234, 171.
[70]M.Z.Wu, L.Z.Yao, W.L.Cai, G.W.Jiang, X.G.Li and Z.Yao: J. Mater. Sci. Technol., 2004, 20, 11.
[71] M.H.Huang, S.Mao, H.Feick, H.Q.Yan, Y.Y.Wu, H.King, E.Weber, R.Russo and Y.P.Yang: Science, 2001, 292, 1897.
[72] P.D.Yang, H.Q.Yan, S.Mao, R.Russo, J.Johnson, R.Saykally, N.Morris, J.Pham, R.He and H.J.Choi: Adv. Funct. Mater, 2002, 12, 323.
[73]K.Liang, K.An and Y.Lee: J. Mater. Sci. Technol., 2005, 21, 292.
[74] L.Li, Y.H.Xiao, Y.W.Yang, X.H.Huang, G.H.Li and L.D.Zhang: Chem. Lett, 2005, 34, 930.
[75] S.P.Ge, K.L.Jiang, X.X.Lu, Y.F.Chen, R.M.Wang and S.S.Fan: Adv. Mater, 2005, 17, 56.
[76] X.S.Fang, C.H.Ye, T.Xie, G.He, Y.H.Wang and L.D.Zhang: Appl. Phys. A, 2005, 80, 423.
[77] Z.Y.Wang, X.S.Fang, Q.F.Lu, C.H.Ye and L.D.Zhang: Appl. Phys. Lett, 2006, 88, 083102.
[78] T.Xie, Z.Jiang, G.S.Wu, X.S.Fang, G.H.Li and L.D.Zhang: J. Cryst. Growth, 2005, 283, 286.
[79]Z.J.Li, Z.Q.Shen, F.Wang and L.L.He: J. Mater. Sci. Technol., 2006, 22, 113.
[80] C.Arnoult, X.Devaux, H.Rinnert and M.Vergnat: J. Mater. Sci. Technol, 2006, 22, 127.
[81] C.R.Martin: Science, 1994, 266, 1961.
[82] H.Masuda and K.Fukuda: Science, 1995, 268, 1466.
[83] L.Li, Y.Zhang, G.H.Li and L.D.Zhang: Chem. Phys. Lett, 2003, 378, 244.
[84] J.D.Holmes, K.P.Johnston, R.C.Doty and B.A.Korgel: Science, 2000, 287, 1471.
[85] Y.D.Li, H.W.Liao, Y.Ding, Y.T.Qian, L.Yang and G.E.Zhou: Chem. Mater, 1998, 10, 2301.
[86] X.Wang, J.Zhuang, Q.Peng and Y.D.Li: Nature, 2005, 437, 121.
[87] W.T.Yao, S.H.Yu, L.Pan, J.Li, Q.S.Wu, L.Zhang and H.Jiang: Smalt, 2005, 1, 320.
[88] H.Masuda and M.Satoh: Jpn. J. Appl. Phys. , 1996, 35, 1126.
[89] Y.Li, G.W.Meng, L.D.Zhang and F.Phillipp: Appl. Phys. Lett, 2000, 76, 2011.
[90] M.J.Zheng, L.D.Zhang, G.H.Li and W.Z.Shen: Chem. Phys. Lett, 2002, 363, 123.
[91] M.J.Zheng, G.H.Li, X.Y.Zhang, S.Y.Huang, Y.Lei and L.D.Zhang: Chem. Mater, 2001, 13, 3859.
[92] M.J.Zheng, L.D.Zhang, G.H.Li, X.Y.Zhang and X.F.Wang: Appl. Phys. Lett, 2001, 79, 839.
[93] Y.H.Wang, J.J.Yang, C.H.Ye, X.S.Fang and L.D.Zhang: Nanotechnology, 2004, 15, 1437.
[94] Y.H.Wang, C.H.Ye, X.S.Fang and L.D.Zhang: Chem. Lett, 2004, 33, 166.
[95] X.J.Xu, G.T.Fei, W.H.Yu, L.Chen, L.D.Zhang, X.Ju, X.P.Hao and B.Y.Wang: Appl. Phys. Lett, 2006, 88, 211902.
[96] L.Li, Y.W.Yang, G.H.Li and L.D.Zhang: Small, 2006, 2, 548.
[97]Z.D.Xiao, L.D.Zhang, X.K.Tian and X.S.Fang: Nan- otechnology, 2005, 16, 2647.
[98] Y.Lei, L.D.Zhang, G.W.Meng, G.H.Li, X.Y.Zhang, C.H.Liang, W.Chen and S.X.Wang: Appl. Phys. Lett, 2001, 78, 1125.
[99] Y.Li, G.S.Cheng and L.D.Zhang: J. Mater. Res, 2000, 15, 2305.
[100] G.S.Wu, X.Y.Yuan, Y.Li, L.Yang, Y.H.Xiao and L.D.Zhang: Solid State Commun, 2005, 0134, 485.
[101] R.S.Wagner and W.C.Ellis: Appl. Phys. Lett, 1964, 4, 89.
[102] Y.Cui, L.J.Lauhon, M.S.Gudiksen, J.F.Wang and C.M.Lieber: Appl. Phys. Lett, 2001, 78, 2214.
[103] P.D.Yang and C.M.Lieber: J. Mater. Res, 1997, 12, 2981.
[104] X.S.Fang, C.H.Ye, X.S.Peng, Y.H.Wang, Y.C.Wu and L.D.Zhang: J. Mater. Chem, 2003, 13, 3040.
[105] Y.W.Wang, C.H.Liang, G.W.Meng, X.S.Peng and L.D.Zhang: J. Mater. Chem, 2002, 12, 651.
[106] G.W.Meng, X.S.Peng, Y.W.Wang, C.Z.Wang, X.F.Wang and L.D.Zhang: Appl. Phys. A, 2003, 76, 119.
[107] Z.L.Wang: Annu. Rev. Phys. Chem, 2004, 55, 159.
[108] R.Q.Zhang, Y.Lifshitz and S.T.Lee: Adv. Mater, 2003, 15, 635.
[109]S.T.Lee, N.Wang, Y.F.Zhang and Y.H.Tang: MRS Bull., 1999, 24, 36.
[110] G.S.Cheng, L.D.Zhang, Y.Zhu, G.T.Fei, L.Li, C.M.Mo and Y.Q.Mao: Appl. Phys. Lett, 1999, 75, 2455.
[111] C.H.Liu, J.A.Zapien, Y.Yao, X.Meng, C.S.Lee, S.S.Fan, Y.Lifshitz and S.T.Lee: Adv. Mater, 2003, 15, 838.
[112] E.Schlam: P. IEEE, 1973, 61, 894.
[113] J.Xu and W.Ji: J. Mater. Sci. Lett, 1999, 18, 115.
[114] L.Sun, C.Liu, C.Liao and C.Yan: J. Mater. Chem, 1999, 9, 1655.
[115] T.V.Prevenslik: J. Lumin, 2000, 87-89, 1210.
[116]P.Calandra, M.Goffredi and V.T.Liveri: Colloid. Surface. A, 1999, 160, 96.
[117] G.Z.Shen, Y.Bando and D.Golberg: Appl. Phys. Lett, 2006, 88, 123107.
[118]Zhengguo JIN, Ruisong GUO, Chunsheng SHI and Xin HOU: fundamentals of Materials Science, Tianjin University Press, 2005, Chapter 5. (in Chinese)
[119] Z.W.Wang, L.L.Daemen, Y.S.Zhao, C.S.Zha, R.T.Downs, X.D.Wang, Z.L.Wang and R.J.Hemley: Nat. Mater, 2005, 4, 922.
[120] L.W.Yin and Y.Bando: Nat. Mater, 2005, 4, 883.
[121] S.B.Qadri, E.F.Skelton, A.D.Dinsmore, J.Z.Hu, W.J.Kim, C.Nelson and B.R.Ratna: J. Appl. Phys, 2001, 89, 115.
[122] D.Moore and Z.L.Wang: J. Mater. Chem, 2006, 16, 3898.
[123] X.Jiang, Y.Xie, J.Lu, L.Zhu, W.Hei and Y.Qian: Chem. Mater, 2001, 13, 1213.
[124] X.J.Xu, G.T.Fei, W.H.Yu, X.W.Wang, L.Chen and L.D.Zhang: Nanotechnology, 2006, 17, 426.
[125] Y.W.Wang, L.D.Zhang, C.H.Liang, G.W.Wang and X.S.Peng: Chem. Phys. Lett, 2002, 357, 314.
[126] Y.Jiang, X.M.Meng, J.Liu, Z.R.Hong, C.S.Lee and S.T.Lee: Adv. Mater, 2003, 15, 1195.
[127] Y.Jiang, W.J.Zhang, J.S.Jie, X.M.Meng, J.A.Zapien and S.T.Lee: Adv. Mater, 2006, 18, 1527.
[128] H.Y.Lu, S.Y.Chu and C.C.Chang: J. Cryst. Growth, 2005, 280, 173.
[129] C.J.Barrelet, Y.Wu, D.C.Bell and C.M.Lieber: J. Am. Chem. Soc, 2003, 125, 11498.
[130] J.H.Zhan, Y.Bando, J.Q.Hu, T.Sekiguchi and D.Golberg: Adv. Mater, 2005, 17, 225.
[131] X.D.Wang, P.X.Gao, C.J.Summers and Z.L.Wang: Adv. Mater, 2002, 14, 1732.
[132]Y.C.Zhu, Y.Bando and Y.Uemura: Chem. Commun, 2003, 836.
[133] L.W.Yin, Y.Bando, J.H.Zhan, M.S.Li and D.Golberg: Adv. Mater, 2005, 17, 1972.
[134] X.Fan, X.M.Meng, X.H.Zhang, S.K.Wu and S.T.Lee: AppJ. Phys. Lett, 2005, 86, 173111.
[135] C.Ma, M.Moore, J.Li and Z.L.Wang: Adv. Mater, 2003, 15, 228.
[136] Y.Jiang, X.M.Meng, J.Liu, Z.Y.Xie, C.S.Lee and S.T.Lee: Adv. Mater, 2003, 15, 323.
[137] Y.C.Zhu, Y.Bando and D.F.Xue: AppJ. Phys. Lett, 2003, 82, 1769.
[138] Q.Li and C.Wang: Appl. Phys. Lett, 2003, 83, 359.
[139] X.Y.Liu, B.Z.Tian, C.Z.Yu and D.Y.Zhao: Chem. Lett, 2004, 33, 522.
[140] S.Kar and S.Chaudhuri: Chem. Phys. Lett, 2005, 414, 40.
[141] G.Z.Shen, Y.Bando, C.C.Tang and D.Golberg: J. Phys. Chem. B, 2006, 110, 7199.
[142] J.P.Ge, J.Wang, H.X.Zhang, X.Wang, Q.Peng and Y.D.Li: Adv. Funct. Mater, 2005, 15, 303.
[143] B.C.Cheng and Z G.Wang: Adv. Funct. Mater, 2005, 15, 1883.
[144] J.F.Gong, S.G.Yang, H.B.Huang, J.Duan, H.W.Liu, X.N.Zhao, R.Zhang and Y.W.Du: Small, 2006, 2, 732.
[145] Y.Li, C.H.Ye, L.D.Zhang, X.S.Fang and Y.G.Zhang: Chem. Lett, 2004, 33, 1638.
[146] L.H.Dong, Y.Chu, F.Y.Yang, Y.Liu and J.L.Liu: Chem. Lett, 2005, 34, 1254.
[147] X.S.Fang, C.H.Ye, X.S.Peng, Y.H.Wang, Y.C.Wu and L.D.Zhang: Adv. Funct. Mater, 2005, 15, 63.
[148] C.H.Ye, G.W.Meng, Y.H.Wang, Z.Jiang and L.D.Zhang: J. Phys. Chem. B, 2002, 106, 10338.
[149] H.Y.Peng, Z.W.Pan, L.Xu, X.H.Fan, N.Wang, C.S.Lee and S.T.Lee: Adv. Mater, 2001, 13, 317.
[150] Z.W.Pan, Z.R.Dai, L.Xu, S.T.Lee and Z.L.Wang: J. Phys. Chem. B, 2001, 105, 2507.
[151] P.D.Yang and C.M.Lieber: Science, 1996, 273, 1836.
[152] Z.R.Dai, Z.W.Pan and Z.L.Wang: Solid State Com- mun, 2001, 118, 351.
[153] J.Zhang, Y.D.Yang, F.H.Jiang, J.P.Li, B.L.Xu, X.C.Wang and S.M.Wang: Nanotecbnology, 2006, 17, 2695.
[154] B.Y.Geng, L.D.Zhang, G.Z.Wang, T.Xie, Y.G.Zhang and G.W.Meng: Appl. Phys. Lett, 2004, 84, 2157.
[155] K.Sooklal, B.S.Cullum, S.M.Angel and C.J.Murphy: J. Phys. Chem, 1996, 100, 4551.
[156] A.A.Bol and A.Meijerink: Phys. Rev. B, 1998, 58, 15997.
[157] T.Ishihara, J.Takahasi and T.Goto: Phys. Rev. B, 1990, 42, 11099.
[158] N.Murase, R.Jagannathan, Y.Kanematsu, M.Watanabe, A.Kurita, K.Hirata, T.Yazawa and T.Kushida: J. Phys. Chem. B, 1999, 103, 754.
[159] W.Tang and D.C.Cameron: Thin Solid Films, 1996, 280, 221.
[160] C.H.Ye, X.S.Fang, G.H.Li and L.D.Zhang: Appl. Phys. Lett, 2004, 85, 3035.
[161] C.H.Ye, X.S.Fang, M.Wang and L.D.Zhang: J. Appl. Phys, 2006, 99, 063504.
[162]N.Riehl and H.Ortmann: Structure of ZnS Phosphors, Translated by S.Xu. Scientific, Princeton, NJ, 1965.
[163]S.Musikant: Optical Materials: An Introduction to Selection and Application, Marcel Dekker, New York, 1985.
[164] S.Shionoya, T.Koda and K.Era: J. Phys. Soc. Jpn, 1964, 19, 1157.
[165] T.Ogino and M.Aoki: Jpn. J. Appl. Phys, 1980, 19, 2395.
[166] D.J.Gibbons and W.E.Spear: J. Phys. Chem. Solids, 1966, 27, 1917.
[167] J.Xu and Y.D.Li: J. Colliud Interf. Sci, 2003, 259, 275.
[168]R.T.Lu, C.B.Cao, H.Z.Zhai and H.S.Zhu: Chinese Sci. Bull., 2004, 49, 1005.
[169] R.T.Lv, C.B.Cao and H.Zhu: Mater. Res. Bull, 2004, 39, 1517.
[170]Y.J.Hsu and S.Y.Lu: Chem. Commun., 2004, 2102.
[171] Q.J.Feng, D.Z.Shen, J.Y.Zhang, H.W.Liang, D.X.Zhao, Y.M.Lu and X.W.Fan: J. Cryst. Growth, 2005, 285, 561.
[172] Q.T.Zhao, L.S.Hou, R.A.Huang and S.P.Gu: Chin. Phys. Lett, 2003, 20, 1496.
[173] L.H.Dong, Y.Chu, F.Y.Yang, Y.Liu and J.L.Liu: Chem. Lett, 2005, 34, 1254.
[174] Y.J.Hsu, S.Y.Lu and Y.F.Lin: Adv. Funct. Mater, 2005, 15, 1350.
[175]J.K.Liu, Q.S.Wu and Y.P.Ding: Chinese. J. Jnorg. Chem., 2003, 19, 1322.
[176] P.D.Yang: Nature, 2003, 425, 243.
[177] Y.Huang, X.F.Duan and C.M.Lieber: Small, 2005, 1, 142.
[178] M.Terrenes: Small, 2005, 1, 1032.
[179] S.H.Yu and M.Yoshimura: Adv. Mater, 2002, 14, 296.
[180]W.C:Chan and S.Nie: Science, 1998, 281, 2016.
[181] C.Ye, X.Fang, Y.Wang, P.Yang, J.Zhao and L.Zhang: Appl. Phys. A, 2004, 79, 113.
[182] Z.Y.Wang, L.D.Zhang, C.H.Ye, X.S.Fang, Z.D.Xiao and M.G.Kong: J. Nanosci. Nanotech, 2005, 5, 2088.
[183] J.W.Zhao, C.H.Ye, X.S.Fang, P.Yan and L.D.Zhang: Chem. Lett, 2005, 34, 1482.
[184] J.H.Zhan, Y.Bando, J.Q.Hu, F.F.Xu and D.Golberg: Small, 2005, 1, 883.
[185] J.Q.Hu, Y.Zhang, X.M.Meng, C.S.Lee and S.T.Lee: Small, 2005, 1, 429.
[186] J.T.Hu, M.Ouyang, P.D.Yang and C.M.Lieber: Nature, 1999, 399, 48.
[187] L.J.Lauhon, M.S.Gudiksen, D.Wang and C.M.Lieber: Nature, 2002, 420, 57.
[188] D.A.LaVan, D.M.Lynn and R.Langer: Nat. Rev. Drug Discovery, 2002, 1, 77.
[189]D.Y.Geng, J.C.Kim, C.J.Chio, C.L.Chen, X.G.Zhao, Z.D.Zhang: J. Mater. Sci. Tecbnol., 2005, 21, 297.
[190] D.F.Emerich and C.G.Thanos: Exper. Opin. Biolog. Therapy, 2003, 3, 655.
[191] M.Y.Han, X.Gao, J.Z.Su and S.Nie: Nat. Biotechnol, 2001, 19, 631.
[192] F.C.Simmel and W.U.Dittmer: Small, 2005, 1, 284.
[193] K.Bogunia-Kubik and M.Sugisaka: Biosystems, 2002, 65, 123.
[194]S.M.Moghimi, A.C.Hunter, J.C.Murray: Faseb. Jour- nal, 2005, 19, 311.
[195]Y.Zhang and N.Huang: J. Biomed. Mater. Res. B, 2006, 76, 161.
[196]X.T.Dong and G.Y.Hong: J. Mater. Sci. Technol., 2005, 21, 555.
[197] C.M.Niemeyer: Angew. Chem., Int. Edit, 2003, 42, 5796.
[198]K.L.Yao, J.Tao, Z.L.Liu, Q.H.Lu, D.Xi, X.P.Luo and Q.Ning: J. Mater. Sci. Technol., 2004, 20, 417.
[199] S.W.Chung, D.S.Ginger, M.W.Morales, Z.F.Zhang, V.Chandrasekhar, M.A.Ratner and C.A.Mirkin: Small, 2005, 1, 64.
[200]X.S.Fang and L.D.Zhang: Chin. J. Inorg. Chem., 2006, 22, 1555
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