Abstract:A novel transition metal coordination supramolecule [Cu(phen)(H2O)2·SO4] has been synthesized by hydrothermally method. The single crystal structure was determined by X-ray diffraction, and the complex was characterized by IR and UV-Vis-NIR spectra. The structure analysis indicates that there are a lot of hydrogen bonds in the crystal, which make the complex form a 1D double chain coordination supramolecule. Surface photovoltage spectroscopy (SPS) technique was applied to detect surface electron behavior and study the photoelectric conversion capability of the complexes. SPS is a useful tool for surveying the charge change of solid material surface. Its sensitivity comes to 108 q·cm-2,which exceeds that of conventional spectroscopy such as XPS and Auger spectroscopy by many orders of magnitude. But long time, the study of SPS has mainly focused on inorganic semiconductor and organic semiconductor. There are seldom reports about the coordination polymers and supramolecules. The results of surface photovoltage spectrum (SPS) indicate that the complex exhibit positive surface photovoltage responses in the range of 300-800 nm. The induced surface photovoltage spectrum (FISPS) proved that the complex possesses the characteristic of p-type semiconductor.
[1] Mukhopadhyay S, Armstroong W H. J. Am. Chem. Soc.,2003, 125(43): 13010. [2] Panak P, Klenze R, Kim J I. J. Alloys Compounds, 1995,225:261. [3] LI G, HOU H W, NIU Y Y. Inorg. Chim. Acta,2002, 332: 216. [4] Wang Yaoyu, Shi Qian, Shi Qizhen. Polyhedron, 1999, 18(5): 2009. [5] XIANG Yang, LU Chun-su(向 阳, 鲁纯素). Acta Biochim. Biophys. Sinica(生物化学与生物物理学报), 1992,24: 117. [6] Godbole M D, Kloskowski M. European Journal Inorg. Chem., 2005,(2): 305. [7] ZHANG Dong-mei, FAN Yu-hua, BI Cai-feng, et al(张栋梅, 范玉华, 毕彩丰, 等). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2007,27(2): 335. [8] ZHAO Yong-liang, YANG Xiao-hua, MO Ri-gen(赵永亮, 杨晓华, 莫日根). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2002,22(2): 223. [9] FANG Y Y, LIU H, DU M. J. Mol. Struct.,2002, 608(2-3): 229. [10] ZHAO Guang-chao, ZHU Jun-jie, CHEN Hong-yuan(赵广超, 朱俊杰, 陈洪渊). Chemical Journal of Chinese Universities(高等学校化学学报),2003,24: 414. [11] Breuning E, Ziener U, Lehn J M. European Journal of Inorg. Chem.,2001, (6): 1515. [12] NIU Shu-yun, FAN Hong-tao, JIN Jing(牛淑云, 范洪涛, 金 晶). Chinese Science Bulletin(科学通报),2004, 49(15): 1499. [13] ZHANG Fang, ZHANG Qian-qian, LU Xiao-lan, et al(张 芳, 张前前, 陆小兰, 等). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2007,27(2): 302. [14] LE Xue-yi, TONG Ming-liang(乐学义, 童明良). Chinese Journal of Inorganic Chemistry(无机化学学报),2002, 18(10): 1023. [15] WANG Zhong-ming, ZHOU Zhi-fen, LIN Hua-kuan, et al(汪中明,周志芬,林华宽,等). Chinese Journal of Inorganic Chemistry(无机化学学报),2000,16(3):503. [16] LI Hong, LE Xue-yi, WU Jian-zhong, et al(李 红,乐学义,吴建中,等). Acta Chimica Sinica(化学学报),2003,61(2):245. [17] Hirohama Tomoya, Yuko Kuranuki, Ebina Ebina, et al. Journal of Inorganic Biochemistry,2005, 99: 1205. [18] ZHOU Qing-hua, YANG Pin(周庆华,杨 频). Acta Chimica Sinica(化学学报),2005,63:71. [19] LI Rui-ping, FAN Qiong-fang, GUO Jian-xiong(李瑞萍,范琼芳,郭建雄). Spectroscopy and Spectral Analysis(光谱学与光谱分析),2003,23(2):288. [20] LIN Y H, WANG D J, ZHAO Q D. J. Phys. Chem. B,2004, 108(10): 3202. [21] YU Jian-feng, WU Tong-hao, WANG De-jun(于剑锋,吴通好,王德军). Acta Chimica Sinica(化学学报),1996, 54:853.