Electronic structure, photovoltaic and absorption properties of designed photo-efficient new organic dyes with D-π-A framework

F. Al-Temimei, Malik S. Mhaimeed
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引用次数: 3

Abstract

In this study, a series of donor-π-acceptor systems were designed by introducing different π-bridges as functional groups. The geometric, electronic, quantum chemical, photovoltaic and absorption properties were investigated by the density functional theory (DFT) and time dependent-DFT method to approve which dyes show a good performance dye-sensitised solar cells. The six derivatives of organic D-π-A structures were studied, based on methyl substituted benzodithiophene as the donor group and ortho-fluorine-substituted phenyl, with cyanoacrylic acid as electron acceptor group with different π-bridges. The results expose that the introduction of the different π-bridge are more promising for formation of organic dyes with D-π-A arrangement. Also, the results found that the all dyes have better open circuit photovoltage, better light-harvesting efficiencies, higher electron injection efficiency and excellent photovoltaic efficiency. Therefore, these properties suggest that these new materials behave as better applicants and synthesis of photo-efficient dyes for sensitisers in DSSCs.
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设计的具有D-π-A结构的新型光效有机染料的电子结构、光伏和吸收性能
在本研究中,通过引入不同的π桥作为官能团,设计了一系列供体-π受体系统。通过密度泛函理论(DFT)和时间相关DFT方法研究了染料敏化太阳能电池的几何、电子、量子化学、光伏和吸收性能,以验证哪些染料表现出良好的性能。研究了以甲基取代的苯并二噻吩为给体基团,邻氟取代的苯基,氰基丙烯酸为电子受体基团,具有不同π桥的有机D-π-A结构的六种衍生物。结果表明,引入不同的π桥对形成D-π-A排列的有机染料更有希望。此外,结果发现,所有染料都具有更好的开路光电压、更好的光收集效率、更高的电子注入效率和优异的光伏效率。因此,这些性质表明,这些新材料是DSSC敏化剂的更好的申请人和光效染料的合成。
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期刊介绍: Today, nuclear reactors generate nearly one quarter of the electricity in nations representing two thirds of humanity, and other nuclear applications are integral to many aspects of the world economy. Nuclear fission remains an important option for meeting energy requirements and maintaining a balanced worldwide energy policy; with major countries expanding nuclear energy"s role and new countries poised to introduce it, the key issue is not whether the use of nuclear technology will grow worldwide, even if public opinion concerning safety, the economics of nuclear power, and waste disposal issues adversely affect the general acceptance of nuclear power, but whether it will grow fast enough to make a decisive contribution to the global imperative of sustainable development.
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