Single-crystalline ZnO nanorods have been synthesized by a simple solvothermal process at low temperature. Transmission electron microscopy (TEM) observations have confirmed that the as-synthesized products have rod-like morphologies with diameters ranging from several nanometers to 30 nm and lengths from 100 nm to 2 μm. Such hexagonal ZnO nanorods are structurally uniform and the growth direction is identified to be [0001]. Growth mechanism of the ZnO nanorods was proposed.
参考文献
[1] | S Iijima .[J].Nature,1991,354:56. |
[2] | Alfredo M Morales;Charles M Liber .[J].Science,1998,279:208. |
[3] | M Yu;J H Liu;S M Li .[J].Journal of University Science Technology B,2006,13(02):169. |
[4] | D. P. Yu;Z. G. Bai;Y. Ding .Nanoscale silicon wires synthesized using simple physical evaporation[J].Applied physics letters,1998(24/26):3458-3460. |
[5] | X S Fang;L D Zhang .[J].Journal of Materials Science and Technology,2006,22(01):1. |
[6] | E Yablomovitch .[J].Physical Review Letters,1987,58:2059. |
[7] | N Saito;H Haneda;T Sekiguchi;N.Ohashi,I.Sakaguch K.Koumoto .[J].Advanced Materials,2002,14:418. |
[8] | T Maruyama;J shinoya .[J].Journal of Materials Science Letters,1992,11:170. |
[9] | J M Nhut;L Pesant;J P Tessonnier;G.Wine',J.Guille,C.Pham-Huu M.J.Ledoux .[J].Applied Catalysis A:General,2003,254:345. |
[10] | M Yoshimoto;S Takagi;Y Umemura;M.Hada H.Nakastuji .[J].Journal of Catalysis,1998,173:53. |
[11] | M D McCluskey;S J Jokela;W M H Oo .[J].Physica B,2006,376:690. |
[12] | E M Wong;P C searson .[J].Applied Physics Letters,1999,74:2939. |
[13] | Z L Wang;J H Song .[J].Science,2006,312:242. |
[14] | L Vayssieres .[J].Advanced Materials,2003,15:464. |
[15] | H Z Wu;D J Qiu;Y J Cai;X.L.Xu N.B.Chen .[J].Journal of Crystal Growth,2002,245:50. |
[16] | Z W Pan;Z R Dai;Z L Wang .[J].Science,2001,291:1947. |
[17] | A.-J. Cheng;D. Wang;H.W. Seo .Cold cathodes for applications in poor vacuum and low pressure air environments: Carbon nanotubes versus ZnO nanoneedles[J].Diamond and Related Materials,2006(2/3):426-432. |
[18] | J M Du;Z M Liu;Y Huang;Y.N.Gao,B.X.Han,W.J.Li G.Y.Yang .[J].Journal of Crystal Growth,2005,280:126. |
[19] | D X Zhao;C Andreazza;P Andreazza;J.G.Ma,Y.C.Liu D.Z.Shen .[J].Chemical Physics Letters,2005,408:335. |
[20] | Q T Wang;G Z Wang;B Xu;J.S.Jie,X.H.Han,G.P.Li,Q.S.Li J.G.Hou .[J].Materials Letters,2005,59:1378. |
[21] | M C Jeong;B Y Oh;W Lee;J.M.Myoung .[J].Journal of Crystal Growth,2004,268:149. |
[22] | W Z Qian;F Wei;T Liu;Z.W.Wang .[J].Solid State Communications,2003,126:365. |
[23] | M J Zheng;L D Zhang;G H Li;W.Z.Shen .[J].Chemical Physics Letters,2002,363:123. |
[24] | Y Sun;Garenth M Fuge;Michael N;R.Ashfold .[J].Chemical Physics Letters,2004,396:21. |
[25] | X Y Ma;H Zhang;Y J Ji;J.Xu D.R.Yang .[J].Materials Letters,2005,59:3393. |
[26] | X M Liu;Y C Zhou .[J].Journal of Crystal Growth,2004,270:527. |
[27] | J Q Hu;Q Li;N B Wang;C.S.Lee S.T.Lee .[J].Chemistry of Materials,2002,14:1216. |
[28] | W Z Zhong;G Z Liu .[J].Science in China(Series B),1994,24:394. |
[29] | Y G Sun;Y N Xia .[J].Advanced Materials,2002,14:833. |
[30] | Y G Sun;B Mayers;T Herricks;Y.N.Xia .[J].Nano Letters,2002,3:955. |
[31] | A R Roosen;W C Carter .[J].Physical A,1998,261:232. |
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