首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >From Molecules to Materials: Molecular and Crystal Engineering Design of Organic Optoelectronic Functional Materials for High Carrier Mobility
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From Molecules to Materials: Molecular and Crystal Engineering Design of Organic Optoelectronic Functional Materials for High Carrier Mobility

机译:从分子到材料:用于高载流子迁移的有机光电功能材料的分子和晶体工程设计

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The reorganization energy and the charge transfer integral between the initial and final states are two key parameters of charge transport. In this study, we find that the internal reorganization energies of molecules can be reduced effectively by cyanation on the tetracene molecule, which ishelpful to improve the carrier mobilities of investigated molecules. On the basis of the polymorph predictor, the appreciated crystal structures of 5-cyanotetracene (1CT), 5,11-dicyanotetracene (2CT), and 5,6,11,12-tetracyanotetracene (4CT) with π-π stacking favorable to enhance the charge transfer integral were obtained. Benefiting from a low internal reorganization energy and dense packing structure, high hole motilities (6.0 and 6.2 cm V~(-1) s~(-1) for lCT-9 and 4CT-2, respectively) were achieved. Both lCT-9 and 4CT-2 are promising candidates for high carrier mobility organic optoelectronic functional materials. The process that constructs crystal structures from single molecules provides a rational way for the search of high-performance organic photovoltaic materials.
机译:初始状态和最终状态之间的重组能量和电荷转移积分是电荷传输的两个关键参数。在这项研究中,我们发现并四苯分子上的氰化作用可以有效地降低分子的内部重组能,这有助于提高被研究分子的载流子迁移率。在多晶型预测因子的基础上,具有π-π堆积特性的5个氰基trace(1CT),5,11-二氰基trace(2CT)和5,6,11,12-四氰基(4CT)的晶体结构有利于增强得到电荷转移积分。得益于内部重组能量低和致密的堆积结构,实现了较高的空穴迁移率(对于ICT-9和4CT-2,分别为6.0和6.2 cm V〜(-1)s〜(-1))。 lCT-9和4CT-2都是高载流子迁移率有机光电功能材料的有希望的候选者。由单分子构造晶体结构的过程为寻找高性能有机光伏材料提供了一种合理的方法。

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