Browse > Article
http://dx.doi.org/10.5229/JECST.2012.3.1.35

Simple Preparation of One-dimensional Metal Selenide Nanomaterials Using Anodic Aluminum Oxide Template  

Piao, Yuanzhe (Graduate School of Convergence Science and Technology, Seoul National University)
Publication Information
Journal of Electrochemical Science and Technology / v.3, no.1, 2012 , pp. 35-43 More about this Journal
Abstract
Highly ordered and perforated anodic aluminum oxide membranes were prepared by anodic oxidation and subsequent removal of the barrier layer. By using these homemade anodic aluminum oxide membranes as templates, metal selenide nanowires and nanotubes were synthesized. The structure and composition of these one-dimensional nanomaterials were studied by field emission scanning electron microscopy as well as transmission electron microscopy and energy dispersive X-ray spectroscopy. The growth process of metal selenide inside anodic aluminum oxide channel was traced by investigating the series of samples using scanning electron microscopy after reacting for different times. Straight and dense copper selenide and silver selenide nanowires with a uniform diameter were successfully prepared. In case of nickel selenide, nanotubes were preferentially formed. Phase and crystallinity of the nanostructured materials were also investigated.
Keywords
Anodic aluminum oxide; Copper selenide; Silver selenide; Nickel selenide; One-dimensional nanostructure;
Citations & Related Records
연도 인용수 순위
  • Reference
1 D.L. Klyaman and T.S. Griffin, J. Am. Chem. Soc., 95, 197 (1973).   DOI
2 M.-C. Daniel and D. Astruc, Chem. Rev., 104, 293 (2004).   DOI   ScienceOn
3 C. Burda, X. Chen, R. Narayanan and M.A. El-Sayed, Chem. Rev., 105, 1025 (2005).   DOI   ScienceOn
4 Y. Wang and N. Herron, J. Phys. Chem., 95, 525 (1991).   DOI
5 J.M. Honig and J. Spalek, Chem. Mater., 10, 2910 (1998).   DOI   ScienceOn
6 C.E.M. Campos, J.C. de Lima, T.A. Grandi, K.D. Machado, J.P. Itie and A. Polian, J. Solid State Chem., 178, 93 (2005).   DOI   ScienceOn
7 V.L. Miller, W.-l. Lee, G. Lawes, N.-P. Ong and R.J. Cava, J. Solid State Chem., 178, 1508 (2005).   DOI   ScienceOn
8 J. Yang, G. Cheng, J. Zeng, S. Yu, X. Liu and Y. Qian, Chem. Mater., 13, 848 (2001).   DOI   ScienceOn
9 Y. Liu, J. Cao, C. Li, J. Zeng, K. Tang, Y. Qian and W. Zhang, J. Crystal Growth, 261, 508 (2004).   DOI   ScienceOn
10 A. Zhao, L. Xu, T. Luo and Y. Qian, Chem. Lett., 34, 1136 (2005).   DOI   ScienceOn
11 Y. Piao and H. Kim, Chem. Commun., 2898 (2003).
12 Y. Mao and S.S. Wong, J. Am. Chem. Soc., 126, 15245 (2004).   DOI   ScienceOn
13 Y. Piao, H. Lim, J.Y. Chang, W.-Y. Lee and H. Kim, Electrochim. Acta, 50, 2997 (2005).   DOI   ScienceOn
14 W. Ju, X. Zhang and S. Wu, Chem. Lett., 34, 510 (2005).   DOI   ScienceOn
15 X. Zhang, W. Ju, M. Gu, X. Meng, W. Shi, X. Zhang and S. Lee, Chem. Commun., 4202 (2005).
16 X.-J. Lu, X.-W. Wei, J. Sun, Y.-H. Ni, G.-C. Zhao and Y. Ye, Chem. Lett., 33, 1384 (2004).   DOI   ScienceOn
17 C. Sun, P. Chen and S. Zhou, Mater. Lett., 61, 1645 (2007).   DOI   ScienceOn
18 W. Chen and X.-H. Xia, ChemPhysChem, 8, 1009 (2007).   DOI   ScienceOn
19 S.P. Mondal, K. Das, A. Dhar and S.K. Ray, Nanotech., 18, 095606 (2007).   DOI   ScienceOn
20 A. Mozalev, S. Magaino and H. Imai, Electrochim. Acta, 46, 2825 (2001).   DOI   ScienceOn
21 S.-Y. Zhang, C.-X. Fang, Y.-P. Tian, K.-R. Zhu, B.-K. Jin, Y.-H. Shen and J.-X. Yang, Cryst. Growth Des., 6, 2809 (2006)   DOI   ScienceOn
22 R. Seoudi, A.A. Shabaka, M.M. Elokr and A. Sobhi, Mater. Lett., 61, 3451 (2007).   DOI   ScienceOn
23 M. Kobayashi, Solid State Ionics, 39, 121 (1990).   DOI   ScienceOn
24 D. Grientschnig and W. Sitte, J. Phys. Chem. Solids, 52, 805 (1991).   DOI   ScienceOn
25 K.L. Lewis, A.M. Pitt, P. Wyatt-Davies and J.R. Milward, Mater. Res. Soc. Symp. Proc., 374, 105 (1994).   DOI
26 T. Akoto, H. Hasuda, M. Ashizawa and T. Hori, Jpn. Kokai Tokyo Kaho, JP 04.171,681.
27 Y.J. Glanville, D.G. Narehood, P.E. Sokol, A. Amma and T. Mallouk, J. Mater. Chem., 12, 2433 (2002).   DOI   ScienceOn
28 B. Nesie and M.S. Jovanovic, J. Serb. Chem. Soc., 56, 353 (1991).
29 R.G. Lope and H.J. Goldsmit, J. Appl. Phys., 76, 1501 (1995).
30 R. Chen, D. Xu, G. Guo and Y. Tang, J. Mater. Chem., 12, 1437 (2002).   DOI   ScienceOn
31 R. Harpeness, O. Palchik, A. Gedanken, V. Palchik, S. Ameil, M.A. Slifkin and A.M. Weiss, Chem. Mater., 14, 2094 (2002).   DOI   ScienceOn
32 J. Xiao, Y. Xie, R. Tang and W. Luo, J. Mater. Chem., 12, 1148 (2002).   DOI   ScienceOn
33 P.K. Khanna and B.K. Das, Mater. Lett., 58, 1030 (2004).   DOI   ScienceOn
34 D.T. Schoen, C. Xie and Y. Cui, J. Am. Chem. Soc., 129, 4116 (2007).   DOI   ScienceOn
35 S.-Y. Zhang, C.-X. Fang, W. Wei, B.-K. Jin, Y.-P. Tian, Y.-H. Shen, J.-X. Yang and H.-W. Gao, J. Phys. Chem. C, 111, 4168 (2007).   DOI   ScienceOn
36 W.S. Sheldrick and M. Wachhold, Angew. Chem. Int. Ed., 36, 206 (1997).   DOI   ScienceOn
37 J.A. Sioss and C.D. Keating, Nano Lett., 5, 1779 (2005).   DOI   ScienceOn
38 L. Zhao, M. Yosef, E. Pippel, H. Hofmeister, M. Steinhart, U. Gösele, and S. Schlecht, Angew. Chem. Int. Ed., 45, 8042 (2006).   DOI   ScienceOn
39 L. Zhao, M. Yosef, M. Steinhart, P. Göring, H. Hofmeister, U. Gösele and S. Schlecht, Angew. Chem. Int. Ed., 45, 311 (2006).   DOI   ScienceOn
40 A.L.N. Stevels and F. Jellinek, Recueil. 111, 273 (1971).
41 H. Okimura, T. Matsumae and R. Makabe, Thin Solid Films, 71, 53 (1980).   DOI   ScienceOn
42 S.K. Haram and K.S.V. Santhanam, Thin Solid Films, 238, 21 (1994).   DOI   ScienceOn
43 W.S. Chen, J.M. Stewart and R.A. Mickelsen, Appl. Phys. Lett., 46, 1095 (1985).   DOI
44 R.C. Kainthla, D.K. Pandya and K.L. Chopra, J. Electrochem. Soc., 127, 277 (1980).   DOI   ScienceOn
45 C. Levy-Clement, M. Neumann-Spallart, S.K. Haram and K.S.V. Santhanam, Thin Solid Films, 302, 12 (1997).   DOI   ScienceOn
46 M. Lakshmi, K. Bindu, S. Bini, K.P. Vijayakumar, C. Sudha Kartha, T. Abe and Y. Kashiwaba, Thin Solid Films, 386, 127 (2001).   DOI   ScienceOn
47 Z.P. Qiao, Y. Xie, J.G. Xu, X.M. Liu, Y.J. Zhu and Y.T. Qian, Can. J. Chem., 78, 1143 (2000).
48 J.J. Zhu, O. Palchik, S.G. Chen and A. Gedanken, J. Phys. Chem. B., 104, 7344 (2000).   DOI   ScienceOn
49 T. Ohtani, T. Nonaka and M. Araki, J. Solid. State Chem., 138, 131 (1998).   DOI   ScienceOn
50 B. Li, Y. Xie, J. Huang and Y. Qian, Ultrasonics Sonochem., 6, 217 (1999).   DOI   ScienceOn
51 W.Z. Wang, Y. Geng, P. Yan, F. Liu, Y. Xie and Y.T. Qian, J. Am. Chem. Soc., 121, 4062 (1999).   DOI   ScienceOn
52 H.L. Su, Y. Xie, B. Li and Y.T. Qian, Mater. Res. Bull., 35, 465 (2000).   DOI   ScienceOn
53 W. Lee, R. Ji, U. Gosele and K. Nielsch, Nature Mater., 5, 741 (2006).   DOI   ScienceOn
54 J. Li, C. Papadopoulos and J. Xu, Nature, 402, 253 (1999).
55 K. Nielsch, F. Muller, A.-P. Li and U. Gosele, Adv. Mater., 12, 582 (2000).   DOI   ScienceOn
56 C.R. Martin and P. Kohli, Nature Rev. Drug. Discov., 2, 29 (2003).   DOI   ScienceOn
57 M. Steinhart, J.H. Wendorff, A. Greiner, R.B. Wehrspohn, K. Nielsch, J. Schilling, J. Choi and U. Gosele, Science, 296, 1997 (2002).   DOI   ScienceOn
58 W. Lee, J.K. Lee, Adv. Mater., 14, 1187 (2002).   DOI
59 K. Matsui, T. Kyotani and A. Tomita, Adv. Mater., 14, 1216 (2002).   DOI
60 H.-M. Zhang, Y.-G. Guo, L.-J. Wan and C.-L. Bai, Chem. Commun., 3022 (2003).
61 N.I. Kovtyukhova, T.E. Mallouk and T.S. Mayer, Adv. Mater., 15, 780 (2003).   DOI   ScienceOn
62 P. Goring, E. Pippel , H. Hofmeister, R.B. Wehrspohn, M. Steinhart and U. Gosele, Nano Lett., 4, 1121 (2004).   DOI   ScienceOn
63 N.I. Kovtyukhova, B.K. Kelley and T.E. Mallouk, J. Am. Chem. Soc., 126, 12738 (2004).   DOI   ScienceOn
64 Q. Lu, F. Gao, S. Komarneni and T.E. Mallouk, J. Am. Chem. Soc., 126, 8650 (2004).   DOI   ScienceOn
65 S. Hou, C.C. Harrell, L. Trofin, P. Kohli and C.R. Martin, J. Am. Chem. Soc., 126, 5674 (2004).   DOI   ScienceOn
66 S. Hou, J. Wang and C.R. Martin, J. Am. Chem. Soc., 127, 8586 (2005).   DOI   ScienceOn
67 N.I. Kovtyukhova and T.E. Mallouk, Adv. Mater., 17, 187 (2005).   DOI   ScienceOn
68 S.I. Cho, W.J. Kwon, S.-J. Choi, P. Kim, S.-A. Park, J. Kim, S.J. Son, R. Xiao, S.-H. Kim and S.B. Lee, Adv. Mater., 17, 171 (2005).   DOI   ScienceOn
69 T. Iwasaki, T. Motoi and T. Den, Appl. Phys. Lett., 75, 2044 (1999).   DOI
70 M. Nagale, B.Y. Kim and M.L. Bruening, J. Am. Chem. Soc., 122, 11670 (2000).   DOI   ScienceOn
71 S. Rahman and H. Yang, Nano Lett., 3, 439 (2003).   DOI   ScienceOn
72 K.L. Hobbs, P.R. Larson, G.D. Lian, J.C. Keay and M.B. Johnson, Nano Lett., 4, 167 (2004).   DOI   ScienceOn
73 T. Yanagishita, Y. Tomabechi, K. Nishio and H. Masuda, Langmuir, 20, 554 (2004).   DOI   ScienceOn
74 S. Setch and A. Miyata, Sci. Pap. Inst. Phys. Chem. Res., 19, 237 (1932).
75 H. Masuda and K. Fukuda, Science, 268, 1466 (1995).   DOI   ScienceOn
76 H. Masuda and M. Satoh, Jpn. J. Appl. Phys., 35, L126 (1996).   DOI   ScienceOn
77 H. Masuda, H. Yamada, M. Satoh, H. Asoh, M. Nakao and T. Tamamura, Appl. Phys. Lett., 71, 2770 (1997).   DOI   ScienceOn
78 O. Jessensky, F. Muller and U. Gosele, Appl. Phys. Lett., 72, 1173 (1998).   DOI   ScienceOn
79 H. Masuda, K. Yada and A. Osaka, Jpn. J. Appl. Phys., 37, L1340 (1998).   DOI   ScienceOn
80 A. P. Li, F. Muller, A. Birner, K. Nielsch and U. Gosele, J. Appl. Phys., 84, 6023 (1998).   DOI   ScienceOn
81 O. Jessensky, F. Müller and U. Gösele, J. Electrochem. Soc., 145, 3735 (1998).   DOI   ScienceOn
82 H. Masuda, H. Asoh, M. Watanabe, K. Nishio, M. Nakao and T. Tamamura, Adv. Mater., 13, 189 (2001).   DOI
83 I. Mikulskas, S. Juodkazis, R. Tomainas and J.G. Dumas, Adv. Mater., 13, 1574 (2001).   DOI   ScienceOn
84 H. Masuda, K. Kanezawa and K. Nishio, Chem. Lett., 12, 1218 (2002).
85 L. Cushing, V.L. Kolesnichenko and C.J. O'Connor, Chem. Rev., 104, 3893 (2004).   DOI   ScienceOn
86 S.-Z. Chu, K. Wada, S. Inoue, M. Isogai and A. Yasumori, Adv. Mater., 17, 2115 (2005).   DOI   ScienceOn
87 G. Schmid, Nanoparticles: From Theory to Application, Wiley-VCH, Weinheim, (2004).
88 T. Hyeon, Chem. Commun., 927 (2003).