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首页> 外文期刊>Advanced energy materials >Rational Strategy to Stabilize an Unstable High-Efficiency Binary Nonfullerene Organic Solar Cells with a Third Component
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Rational Strategy to Stabilize an Unstable High-Efficiency Binary Nonfullerene Organic Solar Cells with a Third Component

机译:合理策略稳定具有第三组分的不稳定高效二元非氟联有机太阳能电池

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摘要

Long device lifetime is still a missing key requirement in the commercialization of nonfullerene acceptor (NFA) organic solar cell technology. Understanding thermodynamic factors driving morphology degradation or stabilization is correspondingly lacking. In this report, thermodynamics is combined with morphology to elucidate the instability of highly efficient PTB7-Th:IEICO-4F binary solar cells and to rationally use PC71BM in ternary solar cells to reduce the loss in the power conversion efficiency from approximate to 35% to 10% after storage for 90 days and at the same time improve performance. The hypomiscibility observed for IEICO-4F in PTB7-Th (below the percolation threshold) leads to overpurification of the mixed domains. By contrast, the hypermiscibility of PC71BM in PTB7-Th of 48 vol% is well above the percolation threshold. At the same time, PC71BM is partly miscible in IEICO-4F suppressing crystallization of IEICO-4F. This work systematically illustrates the origin of the intrinsic degradation of PTB7-Th:IEICO-4F binary solar cells, demonstrates the structure-function relations among thermodynamics, morphology, and photovoltaic performance, and finally carries out a rational strategy to suppress the degradation: the third component needs to have a miscibility in the donor polymer at or above the percolation threshold, yet also needs to be partly miscible with the crystallizable acceptor.
机译:长器件寿命仍然是非氟里琳受体(NFA)有机太阳能电池技术商业化的缺失关键要求。了解驾驶形态学的热力学因素,相应缺乏。在本报告中,热力学与形态相结合,以阐明高效PTB7-TH:IEICO-4F二元太阳能电池的不稳定性,并合理地使用三元太阳能电池中的PC71BM,从近似到35%的电力转换效率降低损失。储存后<10%90天,同时提高性能。在PTB7-β(低于渗透阈值以下)中观察到的乳溶胀性,导致混合结构域的过度缩水。相比之下,PTB7-TH的PTB71BM的高溶剂在48体积%中远远超过渗透阈值。同时,PC71BM在IEICO-4F抑制IEICO-4F的结晶中部分混溶。这项工作系统地说明了PTB7-TH的内在降解的起源:IEICO-4F二元太阳能电池,展示了热力学,形态和光伏性能之间的结构功能关系,最后进行了合理的策略来抑制降级:第三组分需要在供体聚合物处或高于渗透阈值的情况下具有混溶性,但也需要与结晶受体部分混溶。

著录项

  • 来源
    《Advanced energy materials 》 |2019年第20期| 1900376.1-1900376.13| 共13页
  • 作者单位

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA|Beijing Jiaotong Univ Key Lab Luminescence & Opt Informat Minist Educ Beijing 100044 Peoples R China;

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA;

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA;

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA;

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA;

    Beijing Jiaotong Univ Key Lab Luminescence & Opt Informat Minist Educ Beijing 100044 Peoples R China;

    Beijing Jiaotong Univ Key Lab Luminescence & Opt Informat Minist Educ Beijing 100044 Peoples R China;

    North Carolina State Univ Dept Phys Organ & Carbon Elect Lab ORaCEL Raleigh NC 27695 USA;

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

    miscibility; morphology stability; nonfullerene acceptors; organic solar cells; thermodynamics;

    机译:混溶性;形态稳定;非氟联受体;有机太阳能电池;热力学;

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