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首页> 外文期刊>Solar Energy >Effects of multi anchoring groups of catecholamine polymer dyes on the electrical characteristics of metal free dye-sensitized solar cells: A comparison study
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Effects of multi anchoring groups of catecholamine polymer dyes on the electrical characteristics of metal free dye-sensitized solar cells: A comparison study

机译:儿茶酚胺聚合物染料的多个锚定基团对无金属染料敏化太阳能电池电学特性的影响:比较研究

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Poly epinephrine and poly dopamine were synthesized through a new manner in an alkaline solution containing tris(hydroxymethyl)aminomethane (THAM) buffer with pH = 8.5 under nitrogen atmosphere to make the dyes with very strong adhesion and efficient electron injection by direct dye-to-TiO_2 charge transfer. These dyes were used for fabrication of metal free dye sensitized solar cells. Photovoltaic characteristics were obtained for cells made by utilization of two dyes and it was established that the poly epinephrine dye exhibited larger current density and energy conversion efficiency than the poly dopamine dye. This is attributed to the strong attachment of the poly epinephrine dye to the surface of the TiO_2 nanoparticles due to the presence of three anchoring OH groups on the back bone of the polymer. Under simulated AM 1.5 G solar light (100 mW cm~(-2)), a poly epinephrine-sensitized cell exhibited a short circuit current density of 3.63 mA cm~(-2), and overall power conversion efficiency of 0.41%, which is almost 60% larger than that of the poly dopamine dye-sensitized cell (0.26%). UV-Vis absorption spectra of the dyes were recorded and it was shown that absorption by poly epinephrine has extended over a broad range of wavelengths from UV up to mid-range of visible region and has a peak centered at 420 nm. However the range of absorption wavelengths for poly dopamine is limited to the initial part of visible region and the peak wavelength occurs at 257 nm. Moreover, optical band gaps of the dyes were obtained from wavelengths of the absorption edges of the respecting UV-Vis absorption spectra (2.25 and 3.32 eV for poly epinephrine and poly dopamine respectively). HOMO and LUMO energy levels of the dyes were estimated from cyclic voltammograms. Electrochemical impedance spectroscopy was applied to study of the electrical properties of the cells including poly epinephrine and poly dopamine dyes.
机译:在含氮的三(羟甲基)氨基甲烷(THAM)缓冲液(pH = 8.5)的碱性溶液中,在氮气氛下,通过新方法合成了聚肾上腺素和聚多巴胺,从而使染料具有非常强的附着力,并通过直接染料直接将染料注入TiO_2电荷转移。这些染料用于制造无金属染料敏化的太阳能电池。利用两种染料制成的电池获得了光伏特性,并且确定聚肾上腺素染料比聚多巴胺染料具有更大的电流密度和能量转换效率。这归因于聚肾上腺素染料牢固地附着在TiO_2纳米颗粒的表面,这是由于在聚合物的背骨上存在三个锚定的OH基团。在模拟AM 1.5 G太阳光(100 mW cm〜(-2))下,聚肾上腺素致敏电池的短路电流密度为3.63 mA cm〜(-2),总功率转换效率为0.41%,几乎比聚多巴胺染料敏化电池(0.26%)大60%。记录了染料的UV-Vis吸收光谱,并且表明聚肾上腺素的吸收在从UV的宽波长范围内延伸至可见区域的中范围,并且具有以420nm为中心的峰。但是,聚多巴胺的吸收波长范围仅限于可见光区域的起始部分,峰值波长出现在257 nm。此外,从相应的UV-Vis吸收光谱的吸收边缘的波长(分别为聚肾上腺素和聚多巴胺分别为2.25和3.32 eV)获得染料的光学带隙。从循环伏安图估计染料的HOMO和LUMO能级。电化学阻抗谱用于研究包括聚肾上腺素和聚多巴胺染料的细胞的电性能。

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