首页> 外文期刊>Journal of the American Chemical Society >Semiconducting Organic Assemblies Prepared from Tetraphenylethylene Tetracarboxylic Acid and Bis(pyridine)s via Charge-Assisted Hydrogen Bonding
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Semiconducting Organic Assemblies Prepared from Tetraphenylethylene Tetracarboxylic Acid and Bis(pyridine)s via Charge-Assisted Hydrogen Bonding

机译:由四苯基乙烯四羧酸和双(吡啶)通过电荷辅助氢键键合制备的半导体有机组件

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摘要

Principles of crystal engineering have been applied toward the construction of supramolecular assemblies between an acid-functionalized tetraphenylethylene derivative and three different bis(pyridine)s [4,4'-bis(pyridyl)-ethylene, 4/4'-bis (pyridyl) ethane, and 4,4'-bipyridine]. Each assembly was structurally characterized, and charge transfer interactions within each sample were visually apparent. Quantum chemical calculations were used to determine crystal band structure and band gap magnitude, and electrical properties of the materials were measured using conducting probe atomic force microscopy (CP-AFM). The crystals displayed charge-carrier capability, and the magnitude of semiconductivity varied systematically as a function of conjugation in the bis(pyridine) component. Crystals incorporating 4,4'-bis(pyridyl)ethylene and 4,4'-bipyridine displayed conductivities comparable to those of established organic semiconductors (μ_(eff) = 0.38 and 1.7 × 10~(-2)cm~2/V-s, respectively).
机译:晶体工程学的原理已应用于在酸官能化的四苯基乙烯衍生物与三种不同的双(吡啶)[4,4'-双(吡啶基)-乙烯,4 / 4'-双(吡啶基)之间的超分子组装体的构建。乙烷和4,4'-联吡啶]。每个组件的结构都有特征,每个样品中的电荷转移相互作用在视觉上是显而易见的。使用量子化学计算确定晶体的能带结构和带隙幅度,并使用导电探针原子力显微镜(CP-AFM)测量材料的电性能。晶体显示出电荷载流子的能力,并且半导电性的大小随着双(吡啶)组分的共轭作用而系统地变化。掺入4,4'-双(吡啶基)乙烯和4,4'-联吡啶的晶体的电导率与已建立的有机半导体相当(μ_(eff)= 0.38和1.7×10〜(-2)cm〜2 / Vs,分别)。

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