Synthesis of non-fullerene acceptors for highly efficient and thermally stable organic solar cells (Conference Presentation)

Hongzheng Chen, Chang‐Zhi Li
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Abstract

Although fullerene derivatives (e.g. PC61BM/PC71BM) are being widely used as electron acceptors in organic solar cells (OSCs), their obvious drawbacks, such as the high cost, poor absorption, limited energy levels tunability and morphological instability, have become the bottlenecks to hinder the further advancement of OSCs. Therefore, the exploration of non-fullerene electron acceptors is motivated in recent years, and the efficiencies of fullerene-free OSCs have been boosted over 13%. In this presentation, I will focus on the molecular design for highly efficient and thermally stable small molecule electron acceptors based on fused diketopyrrolopyrrole (DPP) and perylene diimide (PDI) building blocks. A new strategy of unfused-ring core is put forward to synthesize thenovel electron acceptors for OSC applications. The highly efficient and thermally stable non-fullerene organic solar cells over 11% have been fabricated by carefully designing the non-fullerene acceptors.
高效热稳定有机太阳能电池用非富勒烯受体的合成(会议报告)
虽然富勒烯衍生物(如PC61BM/PC71BM)作为电子受体在有机太阳能电池(OSCs)中得到了广泛的应用,但其明显的缺点,如成本高、吸收差、能级可调性有限和形态不稳定等,已经成为阻碍OSCs进一步发展的瓶颈。因此,近年来对非富勒烯电子受体的探索受到激励,无富勒烯osc的效率提高了13%以上。在本报告中,我将重点介绍基于熔融二酮吡咯(DPP)和苝二酰亚胺(PDI)构建块的高效热稳定小分子电子受体的分子设计。提出了一种新的非熔合环芯策略来合成新的电子受体。通过对非富勒烯受体的精心设计,制备了高效热稳定的非富勒烯有机太阳能电池。
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