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首页> 外文期刊>Journal of Colloid and Interface Science >Photoelectrochemical properties of a series of electrostatically self-assembled films based on sandwich-type polyoxometalates and a bichromophore hemicyanine dye
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Photoelectrochemical properties of a series of electrostatically self-assembled films based on sandwich-type polyoxometalates and a bichromophore hemicyanine dye

机译:一系列基于三明治型多金属氧酸盐和双色团半菁染料的静电自组装膜的光电化学性质

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A series of photoelectric conversion films consisting of sandwich-type polyoxometalates [P_2W_18M_4(H_2O)_2O_68]~10- (P_2W_18M_4, M=Ni, Cu, Zn) and a bichromophore hemicyanine of (E)-1,1'-(hexane-1,6-diyl)bis(4-(4-(dimethylamino)styryl)pyridinium) bromide (H~6) were prepared on quartz and indium-tin-oxide (ITO)-coated glass substrates by electrostatic self-assembly. The UV-visible absorption spectroscopy showed that the films were uniformly deposited with the visible absorption bands for H6 in the films exhibiting different extents of bathochromic shifts with respect to H~6 aqueous solution. The (P_2W_18M_4/H~6)n films exhibited cathodic photocurrents as irradiated with white light. The photocurrent action spectra were found to match with the absorption spectra of the films, indicating that the cathodic photocurrents were generated based on intramolecular charge transfer excitation of the H~6 in the films. The photocurrents were found to strongly depend on the transition metal ions M in (P_2W_18M_4/H~6)n films. The effects of applied bias voltages, electron acceptor added in the electrolyte, and layer numbers of the films on photocurrent generation of (P_2W_18M_4/H~6)n films were also examined, and photoelectric mechanism discussed.
机译:一系列由三明治型多金属氧酸盐[P_2W_18M_4(H_2O)_2O_68]〜10-(P_2W_18M_4,M = Ni,Cu,Zn)和(E)-1,1'-(己烷-通过静电自组装在石英和氧化铟锡(ITO)涂层的玻璃基板上制备了1,6-二基)双(4-(4-(二甲基氨基)苯乙烯基)吡啶鎓)溴化物(H〜6)。紫外可见吸收光谱表明,薄膜均匀沉积,可见H6的吸收带相对于H〜6水溶液呈现不同程度的红移。 (P_2W_18M_4 / H〜6)n薄膜在白光照射下表现出阴极光电流。发现光电流作用光谱与薄膜的吸收光谱相匹配,表明阴极光电流是基于薄膜中H〜6的分子内电荷转移激发而产生的。发现光电流强烈依赖于(P_2W_18M_4 / H〜6)n薄膜中的过渡金属离子M。还研究了施加的偏压,电解质中添加的电子受体和薄膜的层数对(P_2W_18M_4 / H〜6)n薄膜光电流产生的影响,并讨论了光电机制。

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