无定形固体
化学物理
化学
分子
分子轨道
有机发光二极管
马库斯理论
电子转移
密度泛函理论
原子轨道
电荷(物理)
电子
计算化学
结晶学
物理化学
物理
量子力学
有机化学
动力学
反应速率常数
图层(电子)
作者
Simplice Koudjina,Vipin Kumar,Anuj Tripathi,Guy Yacolé Sylvain Atohoun,Joachim Gbénou,Prabhakar Chetti
摘要
ABSTRACT The optoelectronic and charge transfer integral properties of N,N′‐di(1‐naphthyl)‐N,N′‐diphenyl‐4,4′‐diamine (α‐NPD) organic light‐emitting diode (OLED) in amorphous and crystalline structures is studied based on the Marcus–Levitch–Jortner theory and quantum chemistry calculations. The charge transfer integral simulations have been investigated through hole‐hopping regime from molecule‐to‐molecule in dimers molecules and are determined by frontier molecular orbitals (FMOs) for hole and electron transport. Quantum approaches with TD/DFT and DFT have been used to describe the most relevant electronic transitions of α‐NPD, which present character in harmony with the solvent states. Furthermore, the obtained results reveal that geometric deformations have been relied to naphthalene form and benzene rings in α‐NPD structures, and the charge transfer integral in amorphous state shows and , and in the crystalline state, it shows and . Comparing the transfer integrals average of hole/electron in the both amorphous and crystalline states, a higher value of hole transfer is explored in the amorphous form. The charge transfer transition obtained from FMO states and density of states (DOS), as well as reorganization energies values, indicates that α‐NPD would be an effective organic electronic hole transport material.
科研通智能强力驱动
Strongly Powered by AbleSci AI