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Solution-processable Ti3C2Tx nanosheets as an efficient hole transport layer for high-performance and stable polymer solar cells

机译:解决方案可处理的Ti3C2TX纳米片作为高性能和稳定的聚合物太阳能电池的有效空穴传输层

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摘要

MXenes, a newly interesting family of two-dimensional (2D) materials, have recently attracted wide attention owing to their unique photoelectric properties. In this study, 2D Ti3C2Tx, a classic representative of the MXene family, is fabricated and functioned as a hole transport layer (HTL) in polymer solar cells (PSCs) due to its features of outstanding metallic conductivity, excellent optical transparency, suitable work function, and superior mechanical properties. The Ti3C2Tx nanosheets deposited from neutral solutions are incorporated between the photoactive layer and the anode electrode as HTLs to facilitate charge transport and collection characteristics in PSCs. The results show that the Ti3C2Tx film possesses good light transmission and high conductivity. The photovoltaic characteristics of the Ti3C2Tx-based devices are systematically investigated. It is demonstrated that the incorporation of Ti3C2Tx as a HTL endows PSCs with superior charge extraction capability, exhibiting a significantly higher power conversion efficiency (PCE) of 10.53% than that of the only ITO-based device (4.21%) with PBDB-T as the donor and ITIC as the acceptor. Such photovoltaic performance also outperforms that of the state-of-the-art PEDOT:PSS-based devices (10.11%). Furthermore, the Ti3C2Tx-based device also shows better long-term stability under atmospheric conditions without any encapsulation than the PEDOT:PSS devices, which indicates that the 2D Ti3C2Tx material possesses great potential in PSCs.
机译:MxENES是一种新的有趣的二维(2D)材料系列,最近由于其独特的光电性能而引起了广泛的关注。在本研究中,由于其特征,在本研究中,制造和用作聚合物太阳能电池(PSCS)中的空穴传输层(HTL)的经典代表,这是由于其具有优异的金属导电性,优异的光学透明度,适当的工作功能和卓越的机械性能。从中性溶液中沉积的Ti3C2Tx纳米片掺入光活性层和阳极之间,作为HTL,以促进PSC中的电荷输送和收集特性。结果表明,Ti3C2TX薄膜具有良好的光传输和高导电性。系统地研究了基于TI3C2TX的装置的光伏特性。结果表明,Ti3C2Tx作为HTL赋予PSC,具有优异的电荷提取能力,表现出比仅具有PBDB-T的唯一ITO的设备(4.21%)的显着更高的功率转换效率(PCE)为10.53%作为受体的捐助者和伊诗。这种光伏性能也优于最先进的PEDOT:基于PSS的设备(10.11%)。此外,基于Ti3C2TX的装置还在大气条件下显示出更好的长期稳定性,而没有比PEDOT:PSS器件的封装:PSS器件,这表明2D Ti3C2TX材料在PSC中具有很大的潜力。

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