首页> 外文期刊>acs omega >Photovoltaic Performance of 4,8-Bis(2′-ethylhexylthiophene)thieno2,3-fbenzofuran-Based Dyes Fabricated with Different Donors in Dye-Sensitized Solar Cells
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Photovoltaic Performance of 4,8-Bis(2′-ethylhexylthiophene)thieno2,3-fbenzofuran-Based Dyes Fabricated with Different Donors in Dye-Sensitized Solar Cells

机译:4,8-双(2′-乙基己基噻吩)噻吩并2,3-f苯并呋喃基染料在染料敏化太阳能电池中用不同供体制备的光伏性能

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摘要

Thieno2,3-f benzofuran (BDF) has the advantages of a highly planarized structure, strong electron-donating ability, high hole mobility, good conjugation, and a wide spectral response range. In recent years, BDF has been widely used in organic solar cells, especially in bulk-heterojunction (BHJ) organic solar cells. In this work, a model molecule PSB-1 was synthesized based on this highly planar fragment and used as a photosensitizer in dye-sensitized solar cells (DSCs), then different aromatic amine donors such as triphenylamine (TPA), carbazole (CZ), and phenothiazine (PTZ) were introduced to the end of PSB-1 , and a series of dyes PSB-2 , PSB-3 , and PSB-4 were designed and synthesized. After that, the relationship among the molecular structure, energy level, and photovoltaic performance of the benzo-1,2-b :4,5-b ′dithiophene (BDT) dye was studied by theoretical calculations, photophysics, electrochemistry, and photovoltaic properties. The results show that the introduction of a strong donor can effectively improve the energy level, absorption spectrum, and photovoltaic performance of PSB-1 . Through the preliminary test, we found that the energy conversion efficiency (photovoltaic conversion efficiency—PCE) of PSB-4 is up to 5.5, which is nearly 90 higher than that of PSB-1 (PCE = 2.9), while the introduction of a weak donor greatly weakens the effect, in which the PCE of PSB-3 is 3.5, which is only 20 higher than that of the model molecule. By an analysis of the molecular frontier orbital distribution using theoretical calculations, we found that the electron cloud of the highest occupied orbital level (highest occupied molecular orbital—HOMO) of PSB-3 is mainly distributed on the BDF group so that the electron transfer of excited-state molecules mainly occurs from the BDF to the receptor (CA).
机译:噻吩并[2,3-f]苯并呋喃(BDF)具有高度平坦化结构、较强的供电子能力、高空穴迁移率、良好的共轭性和宽光谱响应范围等优点。近年来,BDF在有机太阳能电池中得到了广泛的应用,特别是在体异质结(BHJ)有机太阳能电池中。本工作基于该高平面片段合成了模型分子PSB-1,并用作染料敏化太阳能电池(DSCs)的光敏剂,然后在PSB-1末端引入三苯胺(TPA)、咔唑(CZ)和吩噻嗪(PTZ)等不同的芳香胺供体,设计合成了一系列染料PSB-2、PSB-3和PSB-4。然后,通过理论计算、光物理、电化学和光伏性能等手段研究了苯并-[1,2-b:4,5-b′]二噻吩(BDT)染料的分子结构、能级和光伏性能之间的关系。结果表明,引入强供体可以有效提高PSB-1的能级、吸收光谱和光伏性能。通过初步测试,我们发现PSB-4的能量转换效率(光伏转换效率—PCE)高达5.5%,比PSB-1(PCE=2.9%)高出近90%,而弱供体的引入大大削弱了效果,其中PSB-3的PCE为3.5%,仅比模型分子高20%。通过理论计算对分子前沿轨道分布的分析,发现PSB-3最高占据轨道能级(最高占据分子轨道—HOMO)的电子云主要分布在BDF基团上,使得激发态分子的电子转移主要发生在BDF到受体(CA)上。

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  • 来源
    《acs omega》 |2020年第21期|12440-12450|共11页
  • 作者单位

    College of Chemsitry and Materials Engineering, Hunan University of Arts and Science;

    Hunan Provincial Key Laboratory of Water Treatment Functional Materials, Hunan University of Arts and Science;

    Hunan Province Engineering Research Center of Electroplating Wastewater Reuse Technology, Hunan University of Arts and ScienceNanjing Foreign Language School;

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