首页> 外文期刊>ACS applied materials & interfaces >Effect of Out-of-Plane Alkyl Group's Position in Dye-Sensitized Solar Cell Efficiency: A Structure-Property Relationship Utilizing Indoline-Based Unsymmetrical Squaraine Dyes
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Effect of Out-of-Plane Alkyl Group's Position in Dye-Sensitized Solar Cell Efficiency: A Structure-Property Relationship Utilizing Indoline-Based Unsymmetrical Squaraine Dyes

机译:平面外烷基位置对染料敏化太阳能电池效率的影响:利用基于吲哚啉的不对称方蓝染料的结构-性质关系

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摘要

Squaraine dyes are promising chromophores to harvest visible and near-infrared (NIR) photons. A series of indoline-based unsymmetrical squaraine (SQ) dyes that contain alkyl chains at sp(3) C- and N- atoms of indoline moieties with a carboxylic acid anchoring group were synthesized. The optical and electrochemical properties of the SQ dyes in solution were nearly identical as there was no change in the D-A-D SQ framework; however, remarkable changes with respect to the power conversion efficiencies (PCE) were observed depending upon the position of alkyl groups in the dye. Introduction of alkyl groups to the indoline unit that was away from anchoring unit were helped in more dye loading with controlled organization of dyes on surface, increased charge transfer resistance, long electron lifetime, and hence higher PCE than that of the corresponding isomer in which the alkyl groups funtionalized indoline unit contains the carboxylic acid anchoring group. Careful analysis of incident photon-to current conversion efficiency (IPCE) profiles indicated the presence of aggregated structure on the TiO2 surface that contributes to the charge injection in the presence of a coadsorbent. A dye-sensitized solar cell (DSSC) device made out of SQ5 was achieved an efficiency of 9.0%, with an open-circuit potential (V-oc) of 660 mV and short-circuit current density (J(sc)) of 19.82 mA/cm 2, under simulated AM 1.5G illumination (100 mW/cm(2)). The IPCE profile of SQ5 shows an onset near to 750 nm with a good quantum efficiency (>80%) in the range of 550-700 nm, indicating the importance of self-organization of dyes on the TiO2 surface for an efficient charge injection. This present investigation revealed the importance of position of alkyl groups in the squaraine-based dyes for the better PCE.
机译:方形染料是有前途的生色团,可以收集可见光和近红外(NIR)光子。合成了一系列基于indoline的不对称方酸(SQ)染料,这些染料在带有羧酸固定基团的indoline部分的sp(3)C-和N-原子处包含烷基链。溶液中SQ染料的光学和电化学性质几乎相同,因为D-A-D SQ骨架没有变化。然而,根据染料中烷基的位置,在功率转换效率(PCE)方面观察到了显着变化。将烷基引入远离锚定单元的二氢吲哚单元有助于增加染料的装载量,控制表面上染料的组织,提高电荷转移阻力,延长电子寿命,因此比相应异构体的PCE更高。官能化的二氢吲哚单元中的烷基含有羧酸锚定基团。仔细分析入射光子到电流的转换效率(IPCE)曲线表明,在共吸附剂存在下,TiO2表面存在聚集结构,这有助于电荷注入。用SQ5制成的染料敏化太阳能电池(DSSC)装置的效率为9.0%,开路电势(V-oc)为660 mV,短路电流密度(J(sc))为19.82 mA / cm 2,在模拟的AM 1.5G照明下(100 mW / cm(2))。 SQ5的IPCE曲线显示起始点接近750 nm,并且在550-700 nm范围内具有良好的量子效率(> 80%),表明TiO2表面染料自组织对于有效电荷注入的重要性。本研究表明,在基于方酸的染料中烷基位置对于改善PCE的重要性。

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