首页> 外文期刊>The Journal of Organic Chemistry >Molecular Engineering of Near Infrared Absorbing Thienopyrazine Double Donor Double Acceptor Organic Dyes for Dye-Sensitized Solar Cells
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Molecular Engineering of Near Infrared Absorbing Thienopyrazine Double Donor Double Acceptor Organic Dyes for Dye-Sensitized Solar Cells

机译:染料染色太阳能电池近红外吸收近红外吸收的分子工程噻唑吡嗪双供体双重受体有机染料

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The thienopyrazine (TPz) building block allows for NIR photon absorption in dye-sensitized solar cells (DSCs) when used as a pi-bridge. We synthesized and characterized 7 organic sensitizers employing thienopyrazine (TPz) as a pi-bridge in a double donor, double acceptor organic dye design. Donor groups are varied based on electron donating strength and sterics at the donor-pi bridge bond with the acceptor groups varied as either carboxylic acids or benzoic acids on the pi-bridge. This dye design was found to be remarkably tunable with solution absorption onsets ranging from 750 to near 1000 nm. Interestingly, the solution absorption measurements do not accurately approximate the dye absorption on TiO2 films with up to a 250 nm blue-shift of the dye absorption onset on TiO2. This shift in absorption and the effect on electron transfer properties is investigated via computational analysis, time-correlated single photon counting studies, and transient absorption spectroscopy. Structure-performance relationships were analyzed for the dyes in DSC devices with the highest performance observed at 17.6 mA/cm(2) of photocurrent and 7.5% PCE for a cosensitized device with a panchromatic IPCE onset of 800 nm.
机译:当用作PI桥时,噻吩吡嗪(TPZ)构建块允许在染料敏化太阳能电池(DSC)中的NIR光子吸收。我们合成并表征了7种有机敏化剂,其含有噻吩吡嗪(TPZ)作为双助剂,双层受体有机染料设计的PI桥。基于供体基团的供体组改变,在供体-PI桥梁粘合剂中的液体捐赠强度,受体组在PI桥上变化为羧酸或苯甲酸。发现这种染料设计具有显着的可调,溶液吸收垂直从750到近1000nm。有趣的是,溶液吸收测量不能准确地近似TiO 2膜上的染料吸收,高达250nm的TiO 2上的染料吸收发作的蓝色偏移。通过计算分析,时间相关的单光子计数研究和瞬态吸收光谱来研究吸收的这种吸收和对电子转移性能的影响。分析结构 - 性能关系对于DSC器件中的染料,在17.6mA / cm(2)的光电流和7.5%PCE的3.5%PCE的染色装置中的染料,具有800nm的全色IPCE。

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