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首页> 外文期刊>ACS applied materials & interfaces >Rational Design of Molecular Hole-Transporting Materials for Perovskite Solar Cells: Direct versus Inverted Device Configurations
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Rational Design of Molecular Hole-Transporting Materials for Perovskite Solar Cells: Direct versus Inverted Device Configurations

机译:Perovskite太阳能电池的分子空穴传输材料的理性设计:Direct与倒置装置配置

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Due to a still limited understanding of the reasons making 2,2',7,7'-tetrakis(N,N-di-p-methoxyphenylamine)-9,9'-spirobifluorene (Spiro-OMeTAD) the state-of-the-art hole-transporting material (HTM) for emerging photovoltaic applications, the molecular tailoring of organic components for perovskite solar cells (PSCs) lacks in solid design criteria. Charge delocalization in radical cationic states can undoubtedly be considered as one of the essential prerequisites for an HTM, but this aspect has been investigated to a relatively minor extent. In marked contrast with the 3-D structure of Spiro-OMeTAD, truxene-based HTMs Trux1 and Trux2 have been employed for the first time in PSCs fabricated with a direct (n-i-p) or inverted (p-i-n) architecture, exhibiting a peculiar behavior with respect to the referential HTM. Notwithstanding the efficient hole extraction from the perovskite layer exhibited by Trux1 and Trux2 in direct configuration devices, their photovoltaic performances were detrimentally affected by their poor hole transport. Conversely, an outstanding improvement of the photovoltaic performances in dopant-free inverted configuration devices compared to Spiro-OMeTAD was recorded, ascribable to the use of thinner HTM layers. The rationalization of the photovoltaic performances exhibited by different configuration devices discussed in this paper can provide new and unexpected prospects for engineering the interface between the active layer of perovskite-based solar cells and the hole transporters.
机译:由于仍然有限地理解制造2,2',7,7'-四(N,N-Di-P-甲氧基甲氧基胺)-9,9'-螺氟烯(Spiro-Ometad)的状态 - 用于出现光伏应用的开孔材料(HTM),钙钛矿太阳能电池(PSCs)的有机组分的分子裁缝缺乏固体设计标准。自由基阳离子状态的充电临床化无疑可以被认为是HTM的基本前提条件之一,但是这方面已经被调查到相对较小的程度。在标记对比度与螺欧比达的3-D结构形成对比中,基于葡萄环的HTMS TRUX1和TRUX2在用直接(NIP)或倒出(PIN)架构制造的PSC中首次采用,表现出具有尊重的特殊行为到参照htm。尽管从直接配置装置中的Trux1和Trux2展示的钙钛矿层的有效孔提取,但它们的光伏性能受到贫困空穴运输的不利影响。相反,记录了与螺旋形脉络膜的无掺杂剂倒置配置装置中的光伏性能的突出改善,易于使用较薄的HTM层。本文讨论的不同配置装置表现出的光伏性能的合理化可以提供新的和意外的前景,用于工程基于钙钛矿的太阳能电池和空穴传输液之间的有源层之间的界面。

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