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Deep localized distortion of alternating bonds and reduced transport of charged carriers in conjugated polymers under photoexcitation

机译:深度本地化交替债券和扭曲减少运输的航空公司共轭聚合物在光激励下

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In a real bulk heterojunction polymer solar cell, after exciton separation in the heterojunction, the resulting negatively-charged carrier, a polaron, moves along the polymer chain of the acceptor, which is believed to be of significance for the charged carrier transport properties in a polymer solar cell. During the negative polaron transport, due to the external light field, the polaron, which is re-excited and induces deep localization, also forms a new local distortion of the alternating bonds. It is revealed that the excited polaron moves more slowly than the ground-state polaron. Furthermore, the velocity of the polaron moving along the polymer chain is crucially dependent on the photoexcitation. With an increase in the intensity of the optical field, the localization of the excited polaron will be deepened, with a decrease of the polaron's velocity. It is discovered that, for a charged carrier, photoexcitation is a significant factor in reducing the efficiency during the charged carrier transport in polymer solar cells. Mostly, the deep trapping effect of charged carrier in composite conjugated polymer solar cell presents an opportunity for the future application in nanoscale memory and imaging devices.
机译:在实际体异质结聚合物太阳能电池中,在异质结,激子分离后由此产生的带负电荷的载体,极化子,沿着聚合物链的受体,这被认为是重要的在一个带电载体运输属性聚合物太阳能电池。运输,由于外部光场,极化子,re-excited,诱发深本地化,也形成了一个新的局部变形交替的债券。兴奋的极化子更缓慢移动极化子极化子。极化子的沿着聚合物链至关重要的是依赖于光致激发。光的强度的增加场,激动的极化子的本地化将加深,减少的极化子的速度。带电载体,光激励是重要的因素在降低效率航空运输在聚合物太阳能电池。大多数情况下,带电的深陷阱效应在复合载体共轭聚合物太阳能对未来的细胞提供了一个机会在纳米级内存和成像中的应用设备。

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