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Effect of Donor Strength and Bulk on Thieno[3,4-b]pyrazine-Based Panchromatic Dyes in Dye-Sensitized Solar Cells

机译:供体强度和体积对染料敏化太阳能电池噻吩并[3,4-B]吡嗪基的噻嗪的影响

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摘要

Near-infrared-absorbing organic dyes are critically needed in dye-sensitized solar cells (DSCs). Thieno[3,4-b]pyrazine (TPz) based dyes can access the NIR spectral region and show power conversion efficiencies (PCEs) of up to 8.1% with sunlight being converted at wavelengths up to 800 nm for 17.6 mA cm(-2) of photocurrent in a co-sensitized DSC device. Precisely controlling dye excited-state energies is critical for good performances in NIR DSCs. Strategies to control TPz dye energetics with stronger donor groups and TPz substituent choice are evaluated here. Additionally, donor size influence versus dye loading on TPz dyes is analyzed with respect to the TiO2 surface protection designed to prevent recombination of electrons in TiO2 with the redox shuttle. Importantly, the dyes evaluated were demonstrated to work well with low Li+ concentration electrolytes, with iodine and cobalt redox shuttle systems, and efficiently as part of co-sensitized devices.
机译:在染料敏化太阳能电池(DSCs)中,近红外吸收有机染料主要需要。 Thieno [3,4-B]吡嗪(TPZ)的染料可以进入NIR光谱区域,并显示高达8.1%的功率转换效率(PCE),阳光在高达800nm的波长上转换为17.6 mA cm(-2 )在共敏化的DSC装置中的光电流。 精确控制染料激发状态能量对于NIR DSC的良好性能至关重要。 在此评估控制TPZ染料能量学和TPZ取代基选择的TPZ染料能量的策略。 另外,对于TiO 2表面保护,分析了TiO2表面保护的供体尺寸影响与TPZ染料上的染料负载进行分析,以防止在TiO 2中与氧化还原梭中的电子复合。 重要的是,对评价的染料进行了证明,用低li +浓度电解质,用碘和钴氧化铈梭系统合作,有效地作为共敏化装置的一部分。

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