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Donor-acceptor-π-acceptor based charge transfer chromophore as electron donors for solution processed small molecule organic bulk heterojunction solar cells

机译:基于供体-受体的电荷转移生色团作为溶液处理的小分子有机体异质结太阳能电池的电子供体

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摘要

Two benzothiazole (BT) based donor-acceptor-π-acceptor (D-A-π-A) molecular system denoted as BT3 and BT4 have been designed, synthesized and their optical and electrochemical properties were investigated. The BT4 show wider absorption profile and lower bandgap as compared to BT3 due to the strong electron withdrawing ability of dicyanoqu-inodimethane (DCNQ) as compared to tetracyanobutadiene (TCBD). The solution processed bulk heterojunction solar cells were fabricated using BT3 and BT4 as electron donor and PC_(71)BM as electron acceptor. The organic solar cells optimized dichloromethane (DCM) processed BT3:PC_(71)BM (1:1) and BT4:PC_(71)BM (1:1) showed PCE of 2.56% and 3.68%, respectively. The higher PCE of BT4:PC_(71)BM is related to the wider absorption of the blend and better ordered domain sizes in the blend as compared to BT3:PC_(71)BM. The devices processed with 1,8-diiodoctane (DIO) additives showed PCE of 3.77% and 5.27%, for BT3:PC_(71)BM and BT4:PC_(71)BM blends, respectively.
机译:设计,合成了两种基于苯并噻唑(BT)的供体-受体-π-受体(D-A-π-A)分子系统,并对其光学和电化学性质进行了研究。由于与四氰基丁二烯(TCBD)相比,双氰基-茚二甲烷(DCNQ)具有较强的吸电子能力,因此BT4与BT3相比,具有更宽的吸收特性和更低的带隙。以BT3和BT4为电子给体,以PC_(71)BM为电子受体,制备了固溶体异质结太阳能电池。有机太阳能电池优化的二氯甲烷(DCM)处理的BT3:PC_(71)BM(1:1)和BT4:PC_(71)BM(1:1)的PCE分别为2.56%和3.68%。与BT3:PC_(71)BM相比,BT4:PC_(71)BM的较高PCE与混合物的更广泛吸收和混合物中更好的有序畴尺寸有关。用1,8-二碘辛烷(DIO)添加剂加工的器件分别显示BT3:PC_(71)BM和BT4:PC_(71)BM共混物的PCE分别为3.77%和5.27%。

著录项

  • 来源
    《Organic Electronics》 |2015年第4期|76-82|共7页
  • 作者单位

    Department of Chemistry, Indian Institute of Technology Indore, MP 452017, India;

    Department of Chemistry, Indian Institute of Technology Indore, MP 452017, India;

    Department of Electrical Engineering, Vivekanand Institute of Technology (VIT), NRI Road, Jagatpura, Jaipur, Rajasthan 303012, India;

    R & D Center for Engineering and Science, JEC Group of Colleges, Jaipur Engineering College, Kukas, Jaipur, Rajasthan 302028, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Small molecules; Bulk heterojunction solar cells; Power conversion efficiency; Solvent additives;

    机译:小分子;体异质结太阳能电池;功率转换效率;溶剂添加剂;

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