Liaoning Provincial Key Laboratory of Novel Micro-Nano Functional Materials, College of Science, Liaoning Petrochemical University, Fushun 113001, PR China.
Liaoning Provincial Key Laboratory of Novel Micro-Nano Functional Materials, College of Science, Liaoning Petrochemical University, Fushun 113001, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Oct 5;298:122744. doi: 10.1016/j.saa.2023.122744. Epub 2023 Apr 15.
Single-molecule plasmas are widely used in spectroscopic studies and plasma devices, and the organic conjugated molecular chain of poly (benzodifurandione) (PBFDO) has excellent electrical conductivity and unique electronic structure. Therefore, an in-depth theoretical study of the spectroscopic, charge transfer and electron transport properties of PBFDO polymers and the analysis of physical mechanisms are essential. In this work, the absorption spectra of neutral and charged PBFDO polymers of different sizes and periodic systems of PBFDO polymers are studied theoretically. The charge transfer modes of the different absorption peaks are also given. The Raman and resonance Raman properties of long-chain PBFDO polymers under 514 nm laser were revealed. The electron transport properties and Current-Voltage Characteristic (I-V) Curves of PBFDO devices were also investigated. This work will provide the necessary theoretical guidance for the application of PBFDO in the field of nanoscale optoelectronics and the design of devices.
单分子等离子体在光谱学研究和等离子体设备中得到了广泛的应用,而聚(苯并二呋喃二酮)(PBFDO)的有机共轭分子链具有优异的导电性和独特的电子结构。因此,深入研究 PBFDO 聚合物的光谱、电荷转移和电子输运特性,并分析物理机制至关重要。在这项工作中,我们从理论上研究了不同大小的中性和带电 PBFDO 聚合物以及 PBFDO 聚合物的周期性系统的吸收光谱,并给出了不同吸收峰的电荷转移模式。揭示了长链 PBFDO 聚合物在 514nm 激光下的喇曼和共振喇曼性质。还研究了 PBFDO 器件的电子输运特性和电流-电压特性(I-V)曲线。这项工作将为 PBFDO 在纳米尺度光电子学领域的应用和器件设计提供必要的理论指导。