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外周氰基取代次酞菁作为潜在的 n 型有机半导体。

Peripherally Cyanated Subphthalocyanines as Potential n-Type Organic Semiconductors.

机构信息

Department of Organic Chemistry, Universidad Autónoma de Madrid, c/Francisco Tomás y Valiente 7, Cantoblanco, 28049, Madrid, Spain.

Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto, Japan.

出版信息

Chemistry. 2018 Jun 12;24(33):8331-8342. doi: 10.1002/chem.201801190. Epub 2018 May 29.

Abstract

A series of peripherally dicyano-, tricyano-, and tetracyano-substituted subphthalocyanines (SubPcs) have been prepared through microwave-assisted, palladium-mediated cyanation of iodinated precursors. The introduction of π-accepting cyano groups in the macrocycle clearly influences its electronic and redox properties, which are dependent on the number and relative position of these substituents. Additional functionalization of the periphery of SubPcs with electron-donating or -withdrawing groups allows for a further fine-tuning of their features, leading to intensely absorbing, strongly electron-accepting panchromatic dyes with low-lying LUMO energy levels. Flash-photolysis time-resolved microwave conductivity measurements on vapor-deposited films demonstrate that some of these novel SubPc derivatives display remarkable intrinsic charge-carrier mobilities that are comparable to or larger than those of other known well-performing acceptor SubPcs; thus confirming their potential as n-type organic semiconductors for application in the fabrication of photovoltaic devices.

摘要

一系列的外周二氰基、三氰基和四氰基取代subphthalocyanines(SubPcs)已通过微波辅助,钯介导的碘化前体氰化制备。引入的π-接受氰基基团在大环中清楚地影响其电子和氧化还原性质,这取决于这些取代基的数量和相对位置。SubPcs 的外围的额外的功能化与供电子或吸电子基团允许进一步微调其特征,导致强烈吸收,强烈电子接受全色染料具有低的最低未占分子轨道能级。在蒸汽沉积薄膜上的闪光光解时间分辨微波电导率测量表明,这些新型 SubPc 衍生物中的一些显示出显著的固有载流子迁移率,其与其他已知的性能良好的受体 SubPcs 的迁移率相当或更大;因此证实了它们作为 n 型有机半导体在制造光伏器件中的应用潜力。

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