Citation: WANG Zhi-Ping, LUO Hong, GAO Li-Hua, WANG Ke-Zhi. Electrostatically Self-Assembled Films Prepared Using Bipolar Thiophene Hemicyanine and Prussian Blue[J]. Acta Physico-Chimica Sinica, ;2011, 27(03): 754-758. doi: 10.3866/PKU.WHXB20110313
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We successfully prepared a novel inorganic-organic hybrid electrostatically self-assembled multilayer film by alternately depositing Prussian blue (PB) and a thiophene-containing hemicyanine. The optical, electrochemical, and photoelectrochemical properties of the as-prepared films were studied by UV-visible absorption spectroscopy, cyclic voltammetry, and photoelectrochemical experiment. Linear increases in the absorbances at 376 and 698 nm with the number of deposited layers, up to at least 8 layers, indicated that film deposition was uniform and reproducible. The PB in the prepared films was found to occur surface-confined rather than diffusion-controlled redox reactions and the peak currents increased with an increase in the number of layers up to 5 layers. Upon irradiation with 100 mW·cm-2 white light the films exhibited stable and reproducible cathodic photocurrents, which increased as the number of layers increased up to 4 layers. A maximum photocurrent density of 0.28 μA·cm-2 was found for the four-layer film at a bias voltage of -0.4 V vs the saturated calomel electrode.
-
-
[1]
(1) Decher, G. Science 1997, 277, 1232.
-
[2]
(2) Zhang, X.; Chen, H.; Zhang, H. Y. Chem. Commun. 2007, 1395.
-
[3]
(3) Wang, K. Z.; Gao, L. H. Mater. Res. Bull. 2002, 37, 2447.
-
[4]
(4) Lang, A. D.; Zhai, J.; Huang, C. H.; Gan, L. B.; Zhao, Y. L.; Zhou, D. J.; Chen, Z. D. J. Phys. Chem. B 1998, 102, 1424.
-
[5]
(5) Yao, Q. H.; Shan, L.; Li, F. Y.; Yin, D. D.; Huang, C. H. Acta Phys. -Chim. Sin. 2003, 19, 635.
-
[6]
[姚巧红, 单 路, 李富有, 尹冬冬, 黄春辉, 物理化学学报, 2003, 19, 635.]
-
[7]
(6) Wang, K. Z.;?Huang, C. H.; Xu, G. X.; Xu, Y.; Liu, Y. Q.; Zhu, D. B.; Zhao, X. S.; Xie, X. M.; Wu. N. Z. Chem. Mater. 1994, 6, 1986.
-
[8]
(7) Wang, K. Z.;?Huang, C. H.; Xu, G. X.; Zhao, X. S.; Xia, X. H.; Wu, N. Z.; Xu, L. G.; Li, T. K. Thin Solid Films 1994, 252, 139.
-
[9]
(8) Wang, K. Z.; Huang, C. H.; Xu, G. X.; Wang, R. J. Polyhedron 1995, 14, 3669.
-
[10]
(9) Wang, K. Z.; Jiang, W.; Huang, C. H.; Xu, G. X.; Xu, L. G.; Li, T. K.; Zhao, X. S.; Xie, X. M. Chem. Lett. 1995, 1761.
-
[11]
(10) Wang, K. Z.; Huang, C. H.; Zhou, D. J.; Xu, G. X.; Xu, Y.; Li, Y. Q.; Zhu, D. B.; Zhao, X. S.; Xie, X. M. Solid State Commun. 1995, 93, 189.
-
[12]
(11) Wang, L. Y.; Wang, K. Z.; Gao, L. H. Acta Chim. Sin. 2003, 61, 1877.
-
[13]
[王丽颖. 王科志. 高丽华. 化学学报, 2003, 61, 1877.]
-
[14]
(12) Gao, L. H.; Hu, X. J.; Zheng, D. S.; Guo, Y.; Wang, K. Z. J. Nanosci. Nanotechnol. 2008, 8, 1355.
-
[15]
(13) Gao, L. H.; Wang, K. Z.; Wang, L. Y. J. Nanosci. Nanotechnol. 2010, 10, 2018.
-
[16]
(14) Ju, C. C.; Luo, H.; Wang, K. Z. J. Nanosci. Nanotechnol. 2010, 10, 2053.
-
[17]
(15) Zou, X.; Fan, Y.; Zhuang, M. Y.; Peng, J.; Wang, K. Z. J. Nanosci. Nanotechnol. 2010, 10, 2203.
-
[18]
(16) Zhang, Y. Q.; Gao, L. H.; Wang, K. Z.; Gao, H. J.; Wang, Y. L. J. Nanosci. Nanotechnol. 2008, 8, 1248.
-
[19]
(17) Wang, Y. B.; Xia, J. Y.; Gao, L. H.; Wang, K. Z. Chem. J. Chin. Univ. 2007, 28, 1175.
-
[20]
[王宜冰, 夏即雅, 高丽华, 王科志. 高校化学学报, 2007, 28, 1175.]
-
[21]
(18) Zhou, X.; Fan, Y.; Zhuang, M. Y.; Peng, J.; Gao, L. H.; Wang, K. Z. Acta Chim. Sin. 2010, 68, 2250.
-
[22]
[邹 旭, 范 娅, 庄, 彭 景, 高丽华, 王科志. 化学学报, 2010, 68,. 2250.]
-
[23]
(19) Zhang, Y. Q.; Gao, L. H.; Duan, Z. M.; Wang, K. Z.; Wang, Y. L.; Gao, H. J. Acta Chim. Sin. 2004, 62, 738.
-
[24]
[张玉琦, 高, 段智明, 王科志, 王业亮, 高鸿均. 化学学报 2004, 62, 738.]
-
[25]
(20) Mishra, A.; Ma, C. Q.; Baeuerle, P. Chem. Rev. 2009, 109, 1141.
-
[26]
(21) Karyakin, A. A. Electroanalysis 2001, 13, 813.
-
[27]
(22) Dei, A. Angew. Chem. Int. Edit. 2005, 44, 1160.
-
[28]
(23) Ricci, F.; Palleschi, G. Biosens. Bioelectron. 2005, 21, 389.
-
[29]
(24) Itaya, K.; Uchida, I.; Neff, V. D. Acc.ounts Chem. Res. 1986, 19, 162.
-
[30]
(25) Robin, M. B. Inorg. Chem. 1962, 1, 337.
-
[31]
(26) Dostal, A.; Meyer, B.; Scholz, F.; Bond, A. M.; Marken, F.; Shaw, S. J. J. Phys. Chem. 1995, 99, 2096.
-
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