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用于染料敏化太阳能电池的具有不同电子供体的噻唑并噻唑基有机染料的理论设计

Theoretical design of thiazolothiazole-based organic dyes with different electron donors for dye-sensitized solar cells.

作者信息

Fitri Asmae, Benjelloun Adil Touimi, Benzakour Mohammed, Mcharfi Mohammed, Hamidi Mohammed, Bouachrine Mohammed

机构信息

ECIM/LIMME, Faculty of Sciences Dhar El Mahraz, University Sidi Mohamed Ben Abdallah, Fez, Morocco.

ECIM/LIMME, Faculty of Sciences Dhar El Mahraz, University Sidi Mohamed Ben Abdallah, Fez, Morocco.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 Nov 11;132:232-8. doi: 10.1016/j.saa.2014.04.164. Epub 2014 May 10.

Abstract

In this study, we have designed four novel organic donor-π-acceptor dyes (D1, D2, D3, D4), used for dye sensitized solar cells (DSSCs). The electron acceptor (anchoring) group was 2-cyanoacrylic for all dyes whereas the electron donor unit varied (coumarin, indoline, carbazole, triphenylamine) and the influence was investigated. These dyes, based on thiazolothiazole as π-spacer, were studied by density functional theory (DFT) and its extensible time dependant DFT (TDDFT) approaches to shed light on how the π-conjugation order influence the performance of the dyes in the DSSCs. The theoretical results have shown that the LUMO and HOMO energy levels of these dyes can be ensuring positive effect on the process of electron injection and dye regeneration. The trend of the calculated HOMO-LUMO gaps nicely compares with the spectral data. Key parameters in close connection with the short-circuit current density (Jsc), including light harvesting efficiency (LHE), injection driving force (ΔGinject.) and total reorganization energy (λtotal), were discussed. The calculated results of these dyes reveal that dye D2, with indoline as electron donor group, can be used as a potential sensitizer for TiO2 nanocrystalline solar cells due to its best electronic and optical properties and good photovoltaic parameters.

摘要

在本研究中,我们设计了四种新型有机供体-π-受体染料(D1、D2、D3、D4),用于染料敏化太阳能电池(DSSC)。所有染料的电子受体(锚定)基团均为2-氰基丙烯酸,而电子供体单元有所不同(香豆素、吲哚啉、咔唑、三苯胺),并对其影响进行了研究。这些以噻唑并噻唑作为π-间隔基的染料,通过密度泛函理论(DFT)及其可扩展的含时密度泛函理论(TDDFT)方法进行研究,以阐明π共轭顺序如何影响染料在DSSC中的性能。理论结果表明,这些染料的最低未占分子轨道(LUMO)和最高已占分子轨道(HOMO)能级能够对电子注入和染料再生过程产生积极影响。计算得到的HOMO-LUMO能隙趋势与光谱数据吻合良好。讨论了与短路电流密度(Jsc)密切相关的关键参数,包括光捕获效率(LHE)、注入驱动力(ΔGinject.)和总重组能(λtotal)。这些染料的计算结果表明,以吲哚啉作为电子供体基团的染料D2,由于其最佳的电子和光学性质以及良好的光伏参数,可作为TiO2纳米晶太阳能电池的潜在敏化剂。

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