炔基丙烯酸小分子半导体中的基团14效应

K. Thorley, M. Benford, Yang Song, S. Parkin, C. Risko, J. Anthony
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引用次数: 0

摘要

硅基乙基已成为常见的功能化有机半导体,在那里他们提高溶解度和稳定性。侧链的身份也决定了分子在固体状态下的组织,从而严重影响大块材料的性质,如电荷迁移率。含锗的侧链显示出同样的倾向,形成有利的固态包装基序,但碳类似物仍然大多未被探索。在这里,我们介绍了碳炔的一般合成,与这些炔功能化的芳烯分子性质的变化,以及在硅或锗侧链中很少观察到的丰富多样的晶体填充基序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Group 14 effects in alkynyl acene small molecule semiconductors
Silyl ethynyl groups have become commonplace in functionalizing organic semiconductors, where they improve solubility and stability. The identity of the side chain also dictates the molecular organization in the solid state, and thus heavily influence bulk material properties such as charge mobility. Germanium-containing side chains show the same propensity to form favorable solid state packing motifs, but carbon analogs remain mostly unexplored. Here we present a general synthesis of carbon alkynes, changes in molecular properties of acenes functionalised with these alkynes, and a rich variety in crystal packing motifs that have rarely been observed with silicon or germanium side chains.
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