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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electric Fields and Charge Screening in Dye Sensitized Mesoporous Nanocrystalline TiO2 Thin Films
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Electric Fields and Charge Screening in Dye Sensitized Mesoporous Nanocrystalline TiO2 Thin Films

机译:染料敏化的介孔纳米晶TiO2薄膜中的电场和电荷筛选

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摘要

The photophysical and electron transfer properties of mesoporous nanocrystalline (anatase) TiO2 thin films sensitized to visible light with [Ru(dtb)2(dcb)](PF6)2, where dtb is 4,4'-(tert- butyl)2-2,2'-bipyridine and deb is 4,4'-(CO2H)2-2,2'-bipyridine, were quantified in acetonitrile solutions that contained 100 mM concentrations of Li~+, Na~+, Mg~(2+), or Ca~(2+) perchlorate salts. The presence of these salts resulted in a dramatic and cation dependent bathochromic (red) shift of the metal-to-ligand charge transfer (MLCT) absorption and photoluminescence (PL) spectra of Ru(dtb)2(dcb)/TiO2 relative to the value measured in neat or 100 mM TBAClO4, where TBA is tetrabutyl ammonium cation, acetonitrile solutions. The magnitude of the shifts followed the trend: Na~+ < Li~+ < Ca~(2+) < Mg~(2+). The PL intensity was also found to decrease in this same order and comparative actinometry studies showed that this was due to MLCT excited state electron transfer quenching by the TiO2 acceptor states. The Ru~(III/II) redox chemistry was found to be non-Nernstian; the ideality factors were cation-dependent, suggestive of an underlying electric field effect. Electrochemical reduction of the TiO2 resulted in a black coloration and a blue shift of the fundamental (VB → CB) absorption, the normalized spectra were cation independent. Reduction of sensitized TiO2 also resulted in a blue shift of the MLCT absorption, the magnitude of which was used to determine the surface electric fields. Under conditions where about 20 electrons were present in each anatase nano crystallite, the electric field strength reported by the Ru compound followed the trend Na~+ < Li~+ < Mg~(2+) < Ca~(2+), with Na~+ being 1.1 MV/cm and Ca~(2+) 2.3 MV/cm. In pulsed laser experiments, the first-derivative absorption signature was observed transiently after excited state injection and iodide oxidation. These absorption amplitudes were time-dependent and decayed over time periods where the number of injected electrons was constant, with behavior attributed to screening of the surface electric field by cations present in the electrolyte. The monovalent cations screened charge much more rapidly than did the dications, k_(Li~+,Na~+) = 5.0 X 10~4 s~(-1) and k_(Mg~(2+),Ca~(2+))= 5.0x 10~2 s~(-1), presumably because the small number of injected electrons resulted in spatially isolated singly reduced Ti(III) sites that were more easily screened by the monocations.
机译:用[Ru(dtb)2(dcb)](PF6)2对可见光敏感的中孔纳米晶(锐钛矿)TiO2薄膜的光物理和电子转移特性,其中dtb是4,4'-(叔丁基)2- 2,2'-联吡啶和deb为4,4'-(CO2H)2-2,2'-联吡啶在含有100 mM浓度的Li〜+,Na〜+,Mg〜(2+)的乙腈溶液中定量)或Ca〜(2+)高氯酸盐。这些盐的存在导致Ru(dtb)2(dcb)/ TiO2相对于NaCl的金属向配体的电荷转移(MLCT)吸收和光致发光(PL)光谱发生剧烈的阳离子依赖型红移(红色)变化。以纯TBAClO4或100 mM TBAClO4(其中TBA是四丁基铵阳离子,乙腈溶液)测量的值。位移的大小遵循以下趋势:Na〜+

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