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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Molecular design and theoretical investigation of new metal-free heteroaromatic dyes with D-pi-A architecture as photosensitizers for DSSC application
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Molecular design and theoretical investigation of new metal-free heteroaromatic dyes with D-pi-A architecture as photosensitizers for DSSC application

机译:D-PI-A架构新型无金属杂芳烃染料作为DSSC应用的光敏剂的分子设计与理论研究

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Herein, we report design, synthesis and photovoltaic performance of four new metal-free heteroaromatic dyes (P1-4) with D-pi-A architecture carrying electron donating carbazole core connected to four different electron withdrawing/anchoring groups, viz cyanoacetic acid, rhodanine-3-acetic acid, barbituric acid and thiobarbituric acid and phenylene ring as a pi-spacer. The newly designed P1-4 were synthesized from carbazole derivative using Suzuki cross coupling approach followed by Knoevenagel condensation reaction. Their structures were confirmed by FTIR, NMR, Mass spectral and elemental analyses. The dyes were subjected to optical and electrochemical studies in order to investigate their absorption emission behavior as well as HOMO/LUMO energies. The UV-vis spectral studies reveal that the P-1.4 showed lambda(max) at 412, 439, 458 and 489 nm, respectively. Their optical band-gap is in the range of 2.17 to 2.61 eV and fluorescence quantum yield is in the order of 44-70%. From energy level diagram, it is clear that all the dyes possess good thermodynamic feasibility for electron injection into CB edge of TiO2 as well as their regeneration from electrolyte system. The photovoltaic performance studies indicate that among the tested dyes, P-1 anchored with cyanoacetic acid displayed the highest IPCE (32%), resulting in improved PCE (1.94%), Jsc (4.68 mA cm(-2)), V-oc (0.588 V) and FF(70.3%) values, when compared to other dyes. Finally, DFT studies were performed using Turbomole 7.1 V software to investigate their electron cloud delocalization in HOMO/LUMO levels and theoretical absorption spectral data. The results reveal that the dye P-1 showed effective charge separation in its FMO levels, which has reflected in its ICT behavior and hence P-1 displayed the improved photovoltaic performance. (C) 2017 Elsevier B.V. All rights reserved.
机译:在此,我们报告了四种新的无金属杂芳族染料(P1-4)的设计,合成和光伏性能,用D-PI-A载体携带电子提供咔唑芯,连接到四种不同的电子抽出/锚定组,VIZ氰基乙酸,罗丹宁-3-乙酸,巴比妥酸和硫酸硫酸和亚苯基环作为PI-垫片。使用Suzuki交叉耦合方法从咔唑衍生物中合成新设计的P1-4,然后用Knoevenagel缩合反应合成。它们的结构通过FTIR,NMR,质谱和元素分析证实。染料经受光学和电化学研究,以研究其吸收排放行为以及HOMO / LUMO Energies。 UV-Vis光谱研究表明,P-1.4分别显示出412,439,458和489nm的λ(最大值)。它们的光学带间隙在2.17至2.61eV的范围内,荧光量子产率为44-70%。从能量水平图中,清楚的是,所有染料都具有良好的热力学可行性,用于电子注入TiO 2的CB边缘以及它们从电解质系统的再生。光伏性能研究表明,在测试染料中,用氰基乙酸锚定的P-1显示最高的IPCE(32%),导致PCE的改善(1.94%),JSC(4.68 mA cm(-2)),V-OC (0.588 V)和FF(70.3%)值,与其他染料相比。最后,使用涡轮机7.1V软件进行DFT研究,以研究其电子云临床化在同源/卢米水平和理论吸收光谱数据中。结果表明,染料P-1在其FMO水平中显示出有效的电荷分离,其在其ICT行为中反映,因此P-1显示了改善的光伏性能。 (c)2017 Elsevier B.v.保留所有权利。

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