J Mater Sci Technol ›› 2008, Vol. 24 ›› Issue (04): 457-472.
• Research Articles • Previous Articles Next Articles
Shulin JI, Changhui YE
Received:
2008-03-03
Revised:
1900-01-01
Online:
2008-07-28
Published:
2009-10-10
[1]D.P.Norton,Y.W.Heo,M.P.Ivill,K.Ip,S.J.Pearton, M.F.Chisholm and T.Steiner:Mater.Today,2004, 7(6),34. [2]M.Kawasaki,A.Ohtomo,I.Ohkubo,H.Koinuma, Z.K.Tang,P.Yu,G.K.L.Wong,B.P.Zhang and Y.Segawa:Mater.Sci.Eng.B,1998,56,239. [3]H.Cao,J.Y.Xu,D.Z.Zhang,S.H.Chang,S.T.Ho, E.W.Seelig,X.Liu and R.P.H.Chang:Phys.Rev. Lett.,2000,84,5584. [4]M.H.Huang,S.Mao,H.Feick,H.Yan,Y.Wu,H.Kind, E.Weber,R.Russo and P.Yang:Science,2001,292, 1897. [5]S.Hirano,N.Takeuchi,S.Shimada,K.Masuya,K.Ibe, H.Tsunakawa and M.Kuwabara:J.Appl.Phys.,2005, 98,094305. [6]A.B.Balashov,N.P.Golubeva and B.S.Skidan:Glass Ceram.,1999,56,58. [7]V.A.Karpina,V.I.Lazorenko,C.V.Lashkarev, V.D.Dobrowolski,L.I.Kopylova,V.A.Baturin, S.A.Pustovoytov,A.Ju.Karpenko,S.A.Eremin, P.M.Lytvyn,V.P.Ovsyannikov and E.A.Mazurenko: Cryst.Res.Technol.,2004,39,980. [8]M.Joseph,H.Tabata and T.Kawai:Appl.Phys.Lett., 1999,74,2534. [9]N.Koshizaki and T.Oyama:Sensor.Actuat.B- Chem.,2000,66,119. [10]T.Gao and T.H.Wang:Appl.Phys.A,2005,80,1451. [11]A.Z.Sadek,S.Choopun,W.Wlodarski,S.J.Ippolito and K.Kalantar-zadeh:IEEE Sens.J.,2007,7,919. [12]L.J.Bie,X.N.Yan,J.Yin,Y.Q.Duan,Y.Q.Duan and Z.H.Yuan:Sensor.Actuat.B-Chem.,2007,126,604. [13]R.A.Mansoori,S.Kothari and R.Ameta:J.Ind. Chem.Soc.,2004,81,335. [14]L.Q.Jing,B.Q.Wang,B.F.Xin,S.D.Li,K.Y.Shi, W.M.Cai and H.G.Fu:J.Solid State Chem.,2004, 177,4221. [15]C.H.Ye,Y.Bando,G.Z.Shen and D.Golberg:J.Phys. Chem.B,2006,110,15146. [16]M.A.Behnajady,N.Modirshahla and R.Hamzavi:J. Hazard.Mater.,2006,133,226. [17]Y.W.Zhu,H.Z.Zhang,X.C.Sun,S.Q.feng,J.Xu, Q.Zhao,B.Xiang,R.M.Wang and D.P.Yu:Appl. Phys.Lett.,2003,83,144. [18]Q.Wan,K.Yu,T.H.Wang and C.L.Lin:Appl.Phys. Lett.,2003,83,2253. [19]D.Banerjee,S.H.Jo and Z.F.Ren:Adv.Mater.,2004, 16,2028. [20]C.H.Ye,Y.Bando,X.S.Fang,G.Z.Shen and D.Golberg:J.Phys.Chem.C,2007,111,12673. [21]X.D.Wang,J.Zhou,C.S.Lao,J.H.Song,N.S.Xu and Z.L.Wang:Adv.Mater.,2007,19,1627. [22]C.C.Lin,H.P.Chen and S.Y.Chen:Chem.Phys. Lett.,2005,404,30. [23]V.A.Fonoberov and A.A.Balandin:J.Nanoelectron. Optoelectron.,2006,1,19. [24]R.Ghosh,S.Fujihara and D.Basak:J.Electron. Mater.,2006,35,1728. [25]K.Keem,J.Kang,D.Y.Jeong,B.Min,K.Cho,H.Kim, S.Kim and Y.K.Kim:Jpn.J.Appl.Phys.,2007,46, 4355. [26]P.V.Radovanovic and D.R.Gamelin:Phys.Rev. Lett.,2003,91,157202. [27]P.Sharma,A.Gupta,K.V.Rao,F.J.Owens, R.Sharma,R.Ahuja,J.M.O.Guillen,B.Johansson and G.A.Gehring:Nat.Mater.,2003,2,673. [28]T.Meron and G.Markovich:J.Phys.Chem.B,2005, 109,20232. [29]K.R.Kittilstved,D.A.Schwartz,A.C.Tuan,S.M.Heald, S.A.Chambers and D.R.Gamelin:Phys.Rev.Lett., 2006,97,037203. [30]D.Karmakar,S.K.Mandal,P.M.Kadam,P.L.Paulose, A.K.Rajarajan,T.K.Nath,A.K.Das,I.Dasgupta and G.P.Das:Phys.Rev.B,2007,75,144404. [31]Y.C.Kong,D.P.Yu,B.Zhang,W.Fang and S.Q.Feng: Appl.Phys.Lett.,2001,78,407. [32]J.Zhang,L.D.Sun,H.Y.Pan,C.S.Liao and C.H.Yan: New J.Chem.,2002,26,33. [33]Y.Li,G.W.Meng,L.D.Zhang and F.Philipp:Appl. Phys.Lett.,2000,76,2011. [34]Y.C.Wang,I.C.Leu and M.H.Hon:J.Mater.Chem., 2002,12,2439. [35]S.H.Jung,E.Oh,K.H.Lee,W.Park and S.H.Jeong: Adv.Mater.,2007,19,749. [36]X.L.Hu,Y.J.Zhu and S.W.Wing:Mater.Chem. Phys.,2004,88,421. [37]R.S.Wagner and W.C.Ellis:Appl.Phys.Lett.,1964, 4,89. [38]G.W.Sears:Acta Metall.,1955,3,361. [39]L.Vayssieres:Int.J.Nanotechnol.,2004,1,1. [40]Z.W.Pan,Z.R.Dai and Z.L.Wang:Science,2001,291, 1947. [41]Y.Dai,Y.Zhang and Z.L.Wang:Solid State Commun., 2003,126,629. [42]P.X.Gao and Z.L.Wang:J.Am.Chem.Soc.,2003, 125,11299. [43]P.X.Gao and Z.L.Wang:Appl.Phys.Lett.,2004,84, 2883. [44]R.S.Yang,Y.Ding and Z.L.Wang:Nano Lett.,2004, 4,1309. [45]X.Y.Kong,Y.Ding,R.S.Yang and Z.L.Wang:Science, 2004,303,1348. [46]P.X.Gao and Z.L.Wang:Small,2005,1,945. [47]P.X.Gao,C.S.Lao,W.L.Hughes and Z.L.Wang:Chem. Phys.Lett.,2005,408,174. [48]P.X.Gao,Y.Ding,W.J.Mai,W.L.Hughes,C.S.Lao and Z.L.Wang:Science,2005,309,1700. [49]C.S.Lao,P.X.Gao,R.S.Yang,Y.Zhang,Y.Dai and Z.L.Wang:Chem.Phys.Lett.,2006,417,358. [50]X.D.Wang,J.H.Song and Z.L.Wang:Chem.Phys. Lett.,2006,424,86. [51]X.Y.Kong and Z.L.Wang:Nano Lett.,2003,3,1625. [52]X.Y.Kong and Z.L.Wang:Appl.Phys.Lett.,2004, 84,975. [53]Z.L.Wang:J.Mater.Chem.,2005,15,1021. [54]E.I.Givaxgizov:J.Cryst.Growth,1975,31,20. [55]E.I.Givargizov:Highly Anisotropic Crystals,D.Reidel Publishing Company,Dordrecht,Holland,1987,100. [56]G.A.Bootsma and H.J.Gassen:J.Cryst.Growth, 1971,10,223. [57]Z.W.Pan,S.Dai,C.M.Rouleau and D.H.Lowndes: Angew.Chem.Int.Edit.,2005,44,274. [58]Y.Ding,P.X.Gao,and Z.L.Wang:J.Am.Chem.Soc., 2004,126,2066. [59]R.L.Parker:J.Chem.Phys.,1962,37,1600. [60]V.A.Nebol'sin and A,A.Shchetinin:Inorg.Mater., 2003,39,899. [61]A.I.Persson,M.W.Larsson,S.Stenstrom,B.J.Ohlsson, L.Samuelson and L.R.Wallenberg:Nat.Mater.,2004, 3,677. [62]T.I.Kamins:J.Appl.Phys.,2001,89,1008. [63]K.A.Dick,K.Deppert,L.S.Karlsson,L.R.Wallenberg, L.Samuelson and W.Seifert:Adv.Funct.Mater., 2005,15,1603. [64]S.Kodambaka,J.Tersoff,M.C.Reuter and F.M.Ross: Science,2007,316,729. [65]T.Tan,N.Li and U.G(?)sele:Appl.Phys.Lett.,2003, 83,1199. [66]M.V.Chernysheva,A.A.Eliseev,K.S.Napolskii, A.V.Lukashin,Y.D.Tretyakov,N.A.Grigoryeva, S.V.Grigoryev and M.Wolff:Thin Solid Films,2006, 495,73. [67]A.Fukuoka,Y.Sakamoto,T.Higuchi,N.Shimomura and M.Ichikawa:J.Porous Mater.,2006,13,231. [68]R.Campbell,M.G.Bakker,G.Havrilla,V.Montoya, E.A.Kenik and M.Shamsuzzoha:Micropor.Mesopor. Mat.,2006,97,114. [69]J.Xu,W.H.Zhang,M.A.Morris and J.D.Holmes: Mater.Chem.Phys.,2007,104,50. [70]S.Inoue,N.Koshizaki and T.Kodaira:Int.J.Mod. Phys.B,2005,19,2817. [71]S.H.Lee,T.Y.Lee,J.H.Han,P.S.Alegaonkar, A.S.Berdinsky,D.G.Kuvshinov,J.B.Yoo and C.Y.Park:Diam.Relat.Mater.,2005,14,1876. [72]J.P.Zhai,Z.K.Tang,X.J.Hu,X.X.Zhang and P.Sheng: Phys.Status Solidi B,2006,243,3082. [73]W.K.Burton,N.Cabrera and F.C.Frank:Nature, 1949,163,398. [74]W.K.Burton,N.Cabrera and F.C.Frank:Philos.T. Roy.S-A,1951,243,299. [75]G.W.Sears:Acta Metall.,1953,1,457. [76]G.W.Sears:Acta Metall.,1955,3,361. [77]G.W.Sears:Acta Metall.,1955,3,367. [78]S.S.Brenner:Acta Metall.,1956,4,62. [79]R.V.Coleman and G.W.Sears:Acta Metall.,1957,5, 131. [80]C.R.Morelock and G.W.Sears:J.Chem.Phys.,1959, 31,926. [81]S.S.Brenner and G.W.Sears:Acta Metall.,1956,4, 268. [82]R.Gomer:J.Chem.Phys.,1958,28,457. [83]R.L.Parker,R.L.Anderson and S.C.Hardy:Appl. Phys.Lett.,1963,3,93. [84]J.P.Hirth and G.M.Pound:J.Phys.Chem.,1960,64, 619. [85]R.L.Parker and S.C.Hardy:J.Chem.Phys.,1962,37, 1606. [86]J.M.Blakkly and K.A.Jackson:J.Chem.Phys.,1962, 37,428. [87]V.Ruth and J.P.Hirth:J.Chem.Phys.,1964,41, 3139. [88]R.Gomer:J.Chem.Phys.,1963,38,273. [89]C.M.Drum and J.W.Mitchell:Appl.Phys.Lett., 1964,4,164. [90]W.W.Webb,R.D.Dragsdorf and W.D.Forgeng:Phys. Rev.,1957,108,498. [91]C.Herring:Phys.Rev.,1951,82,87. [92]E.Kaldis:J.Cryst.Growth,1969,5,376. [93]G.W.Sears:J.Chem.Phys.,1956,25,154. [94]K.Thornton,N.Akaiwa and P.W.Voorhees:Acta Mater.,2004,52,1353. [95]G.Madras and B.J.McCoy:Chem.Eng.Sci.,2004, 59,2753. [96]D.J.Horntrop:J.Comput.Phys.,2006,16,1679. [97]M.Nespolo and G.Ferraris:Eur.J.Mineral.,2004,16, 401. [98]E.J.H.Lee,C.Ribeiro,E.Longo and E.R.Leite:J. Phys.Chem.B,2005,109,20842. [99]H.C.Zeng:Int.J.Nanotechnol.,2007,4,329. [100]I.M.Lifshitz and V.V.Slyozov:J.Phys.Chem.Solids, 1961,19,35. [101]C.Wagner:Z.Elektrochem.,1961,65,581. [102]C.Ribeiro,E.J.H.Lee,E.Longo and E.R.Leite:Chem. Phys.Chem.,2005,6,690. [103]A.P.Alivisatos:Science,2000,289,736. [104]R.L.Penn,G.Oskam,T.J.Strathmann,P.C.Searson, A.T.Stone and D.R.Veblen:J.Phys.Chem.B,2001, 105,2177. [105]J.F.Banfield,S.A.Welch,H.Z.Zhang,T.T.Ebert and R.L.Penn:Science,2000,289,751. [106]F.Huang,H.Z.Zhang and J.F.Banfield:Nano Lett., 2003,3,373. [107]L.Vayssieres:Int.J.Nanotechnol.,2005,2,411. [108]Z.L.Wang,X.Y.Kong and J.Zuo:Phys.Rev.Lett., 2003,91,185502. [109]S.Y.Li,C.Y.Lee and T.Y.Tseng:J.Cryst.Growth, 2003,247,357. [110]D.Banerjee,J.Y.Lao,D.Z.Wang,J.Y.Huang,Z.F.Ren, D.Steeves,B.Kimball and M.Sennett:Appl.Phys. Lett.,2003,83,2061. [111]Y.J.Li,L.P.Lou,R.Duan,P.B.Shi and G.G.Qin:Solid State Commun.,2004,129,233. [112]J.W.Zhao,C.H.Ye,X.S.Fang,L.R.Qin and L.D.Zhang:Cryst.Growth Des.,2006,6,2643. [113]G.M.Hua,Y.Zhang,C.H.Ye,M.Wang and L.D.Zhang: Nanotechnolgy,2007,18,145605. [114]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. [115]C.H.Ye,X.S.Fang,Y.F.Hao,X.M.Teng and L.D.Zhang:J.Phys.Chem.B,2005,109,19758. [116]X.S.Fang,C.H.Ye,L.D.Zhang,Y.Li and Z.D.Xiao: Chem.Lett.,2005,34,436. [117]L.Yang,Y.Li,Y.H.Xiao,C.H.Ye and L.D.Zhang: Chem.Lett.,2005,34,828. [118]J.F.Li,L.Z.Yao,C.H.Ye,C.M.Mo,W.L.Cai,Y.Zhang and L.D.Zhang:J.Cryst.Growth,2001,223,535. [119]L.Vayssieres,K.Keis,S.E.Lindquist and A.Hagfeldt: J.Phys.Chem.B,2001,105,3350. [120]K.Govender,D.S.Boyle,P.OBrien,D.Binks,D.West and D.Coleman:Adv.Mater.,2002,14,1221. [121]J.H.Choy,E.S.Jang,J.H.Won,J.H.Chung,D.J.Jang and Y.W.Kim:Adv.Mater.,2003,15,1911. [122]L.E.Greene,M.Law,J.Goldberger,F.Kim, J.C.Johnson,Y.Zhang,R.J.SaykaUy and P.Yang: Angew.Chem.Int.Edit.,2003,42,3031. [123]L.E.Greene,M.Law,D.H.Tan,M.Montano, J.Goldberger,G.Somorjai and P.Yang:Nano Lett., 2005,5,1231. [124]L.Vayssieres:Adv.Mater.,2003,15,464. [125]J.Yahiro,Y.Oaki and H.Imai:Small,2006,2,1183. [126]Y.Sun,G.M.Fuge,N.A.Fox,D.J.Riley and M.N.R.Ashfold:Adv.Mater.,2005,17,2477. [127]Y.F.Zhang,R.E.Russo and S.S.Mao:Appl.Phys. Lett.,2005,87,133115. [128]R.C.Wang,C.P.Liu,J.L.Huang and S.J.Chen:Appl. Phys.Lett.,2005,86,251104. [129]S.W.Kim,S.Fujita and S.Fujita:Appl.Phys.Lett., 2005,86,153119. [130]E.C.Greyson,Y.Babayan and T.W.Odom:Adv. Mater.,2004,16,1348. [131]C.Y.Nam,D.Tham and J.E.Fischer:Appl.Phys. Lett.,2004,85,5676. [132]R.A.Laudise and A.A.Ballman:J.Phys.Chem.,1960, 64,688. [133]Y.Ding,X.Y.Kong and Z.L.Wang:Phys.Rev.B, 2004,70,235408. [134]B.Liu and H.C.Zeng:J.Am.Chem.Soc.,2005,127, 18262. [135]C.L.Hsu,S.J.Chang,Y.R.Lin,P.C.Li,T.S.Lin, S.Y.Tsai,T.H.Lu and I.C.Chen:Chem.Phys.Lett., 2005,416,75. [136]D.I.Suh,S.Y.Lee,T.H.Kim,J.M.Chun,E.K.Suh, O.B.Yang and S.K.Lee:Chem.Phys.Lett.,2007, 442,348. [137]H.Pan,J.Z.Luo,H.Sun,Y.P.Feng,C.K.Poh and J.Y.Lin:Nanotechnolgy,2006,17,2963. [138]X.D.Wang,J.H.Song,J.Liu and Z.L.Wang:Science, 2007,316,102. [139]R.Narayanan and M.A.El-Sayed:Nano Lett.,2004,4, 1343. [140]F.Xu,K.Yu,G.D.Li,Q.Li and Z.Q.Zhu:Nanotech- nolgy,2006,17,2855. [141]Z.Xu,X.D.Bai and E.G.Wang:Appl.Phys.Lett., 2006,88,133107. [142]Q.Zhao,H.Z.Zhang,Y.W.Zhu,S.Q.Feng,X.C.Sun, J.Xu and D.P.Yu:Appl.Phys.Lett.,2005,86, 203115. [143]C.J.Edgcombe and U.Valdre:Phil Mag.B,2002,82, 987. |
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