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首页> 外文期刊>Physical Review, B. Condensed Matter >THEORY OF PHOTOINDUCED CHARGE TRANSFER IN A MOLECULARLY DOPED CONJUGATED POLYMER
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THEORY OF PHOTOINDUCED CHARGE TRANSFER IN A MOLECULARLY DOPED CONJUGATED POLYMER

机译:分子掺杂共轭聚合物的光诱导电荷转移理论

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摘要

In a molecularly doped conjugated polymer, it is possible for an exciton, photoexcited on the polymer, to decay into a free charge in the polymer's valence or conduction band and a charge of opposite sign in an available level on an adjacent dopant molecule. Such pair processes, which conserve energy, can occur if the energy omega(0) of the polymer exciton lies within the continuum part of the charge-transfer electron-hole excitation spectrum of the polymer/molecule composite. We calculate the corresponding exciton decay rate 1/tau(Delta) for two types of matrix element that describe the microscopic charge-transfer event. This rate is a maximum when the energy Delta of the molecular acceptor level lies below the conduction-band edge by an amount that is a little more than the exciton's binding energy, a similar result occurring for the case of hole transfer to the molecule. The reduction of 1/tau by the Coulomb interaction between the electron and hole in the final state is important. [References: 11]
机译:在分子掺杂的共轭聚合物中,光激发在聚合物上的激子有可能在聚合物的化合价或导带中分解为自由电荷,并在相邻的掺杂剂分子上以可用水平带相反符号的电荷。如果聚合物激子的能量ω(0)位于聚合物/分子复合物的电荷转移电子-空穴激发光谱的连续部分内,则会发生这种节省能量的配对过程。我们为描述微观电荷转移事件的两种矩阵元素计算了相应的激子衰减率1 /tauΔ。当分子受体能级的能量Delta低于导带边缘的量略大于激子的结合能时,此速率最大,对于空穴转移到分子的情况,也会发生类似的结果。在最终状态下,电子与空穴之间的库仑相互作用使1 / tau的减少很重要。 [参考:11]

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