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A Solution-Processed Tetra-Alkoxylated Zinc Phthalocyanine as Hole Transporting Material for Emerging Photovoltaic Technologies

机译:一种溶液加工的四烷氧基化锌酞菁作为新出现的光伏技术的空穴传输材料

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摘要

A tetra-n-butoxy zinc phthalocyanine (n-BuO)4ZnPc has been synthesized in a single step, starting from commercial precursors, and easily purified. The molecule can be solution processed to form an effective and inexpensive hole transport layer for organic and perovskite solar cells. These appealing features are suggested by the results of a series of chemical, optical, and voltammetric characterizations of the molecule, supported by the results of ab initio simulations. Preliminary measurements of (n-BuO)4ZnPc-methylammonium lead triiodide perovskite-based devices confirm such suggestion and indicate that the interface between the photoactive layer and the hole transporting layer is characterized by hole-extracting and electron-blocking properties, potentially competitive with those of other standards de facto in the field of organic hole transport materials, like the expensive Spiro-OMeTAD.
机译:从商业前体开始,在单一步骤中合成了四丁氧基锌酞菁(N-BuO)4ZNPC,并且容易纯化。可以将分子加工以形成用于有机和钙钛矿太阳能电池的有效和廉价的空穴传输层。这些吸引力的特征是通过分子的一系列化学,光学和伏安特征的结果提出的,由AB Initio模拟的结果支持。 (N-BUO)4ZNPC-甲基甲基铅三碘化物的钙钛矿器件的初步测量确认了这种建议,并表明光活性层和空穴传输层之间的界面的特征在于空穴提取和电子阻挡性能,可能与那些竞争竞争其他标准在有机孔输送材料领域,如昂贵的螺旋欧比达。

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