电荷(物理)
分子动力学
化学物理
材料科学
动力学蒙特卡罗方法
多尺度建模
共价键
电子迁移率
马库斯理论
蒙特卡罗方法
分子
电子结构
纳米技术
计算化学
统计物理学
化学
物理
光电子学
量子力学
统计
数学
有机化学
反应速率常数
动力学
作者
Sanyam Sanyam,Anirban Mondal
摘要
Hole-transporting materials (HTMs) play a pivotal role in the performance and stability of organic electronic devices by enabling efficient hole transport. This study employs a multiscale approach to explore the relationship between molecular morphology and charge transfer properties in four HTM molecules. By combining quantum mechanical calculations, molecular dynamics simulations, and kinetic Monte Carlo modeling, we analyze key structural features such as radial distribution functions, principal axis orientations, and non-covalent interactions. Our findings reveal that molecular size and substituent effects significantly influence non-covalent interactions and molecular alignments, thereby affecting charge transport pathways. Charge transfer rates and energetic disorder were modeled using the master equation, and mobilities were computed, showing satisfactory agreement with experimental data. This comprehensive analysis provides valuable insights into the design of HTMs for organic electronic devices, emphasizing the importance of molecular architecture in optimizing charge mobility and minimizing energy losses.
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