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首页> 外文期刊>Journal of the American Chemical Society >Theoretical Studies on Conjugated Phenyl-Cored Thiophene Dendrimers for Photovoltaic Applications
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Theoretical Studies on Conjugated Phenyl-Cored Thiophene Dendrimers for Photovoltaic Applications

机译:用于光伏应用的共轭苯酚噻吩树枝状大分子的理论研究

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摘要

π-Conjugated dendrimers are an important class of materials for optoelectronic devices, especially for light-harvesting systems. We report here a theoretical investigation of the optical response and of the excited-state properties of three-arm and four-arm phenyl-cored dendrimers for photovoltaic applications. A variety of theoretical methods are used and evaluated against each other to calculate vertical transition energies, absorption and excitation spectra with vibronic structure, charge transport, and excitonic behavior upon photoexcitation and photoemission processes. Photophysical phenomena in these dendrimers are, in general, better explained with ab initio methods rather than with semiempirical techniques. Calculated reorganization energies were found to correlate well with the device photocurrent data where available. The excitons formed during photoexcitation are calculated to be more delocalized than the ones formed after vibrational relaxation in the excited states for fluorescence emission. The localization of excitons in emission processes is a result of geometrical changes in the excited state coupled with vibronic modes. Correlated electron-hole pair diagrams illustrate breaking of π-conjugation in three-arm dendrimers due to meta linkage of arms with the core, whereas four-arm dendrimers are not affected by such breaking due to presence of ortho and para branching. Yet, ortho branching causes large twist angles between the core and the arms that are detrimental to jr-electron system delocalization over the structure.
机译:π共轭树枝状大分子是光电器件(尤其是光收集系统)的一类重要材料。我们在此报告对光电应用的三臂和四臂苯基核树枝状大分子的光学响应和激发态性质的理论研究。使用各种理论方法并相互评估,可以计算出垂直跃迁能,具有电子振动结构的吸收和激发光谱,电荷传输以及在光激发和光发射过程中的激子行为。通常,使用从头开始的方法而不是使用半经验技术可以更好地解释这些树枝状聚合物中的光物理现象。发现计算的重组能量与器件光电流数据(在可用的情况下)很好地相关。计算出在光激发过程中形成的激子比在激发态下振动弛豫后形成的激子更离域,以激发荧光。激子在发射过程中的定位是激发态的几何变化加上振动模式的结果。相关的电子-空穴对图说明了三臂树枝状大分子中π与共轭的断裂,这是由于臂与核之间的间位连接所致,而四臂树枝状大分子不受邻位和对位支化的影响而受到这种断裂的影响。然而,邻位分支在芯和臂之间引起大的扭转角,这不利于结构上的jr电子系统离域。

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