首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tuning zinc oxide/organic energy level alignment using mixed triethoxysilane monolayers
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Tuning zinc oxide/organic energy level alignment using mixed triethoxysilane monolayers

机译:使用混合的三乙氧基硅烷单层微调氧化锌/有机能级对齐

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摘要

Interfacial energy level alignment influences several critical organic optoelectronic device characteristics including charge transfer barriers, turn-on voltage, and open circuit voltage (V_(oc))-Introduction of dipolar molecular monolayers on metal oxide surfaces has allowed improvements in device performance as well as fundamental studies of energy level alignment in these devices. We demonstrate that dipolar mixed monolayers can be covalently bonded to zinc oxide (ZnO) through the triethoxysilane chemical attachment scheme, and that these monolayers tune the work function of the ZnO surface over 0.6 eV. We then employ mixed monolayer-treated ZnO surfaces as the electron-selective contact in inverted bulk heterojunction photovoltaic devices to determine the correlation between the V_(oc) and the work function of the contact. We find the relationship of -0.14 V eV~1 between the V_(oc) and contact work function is consistent with current results and theories of contact influence on V_(oc).
机译:界面能级对准影响几个关键的有机光电器件特性,包括电荷转移势垒,导通电压和开路电压(V_(oc))-在金属氧化物表面引入双极分子单分子层可以改善器件的性能以及这些设备中能级对准的基础研究。我们证明偶极混合单层可以通过三乙氧基硅烷化学附着方案共价键合到氧化锌(ZnO),并且这些单层在0.6 eV上调节ZnO表面的功函数。然后,我们将混合单层处理的ZnO表面用作反向本体异质结光伏器件中的电子选择性接触,以确定V_(oc)与接触功函数之间的相关性。我们发现,V_(oc)与接触功函数之间的关系为-0.14 V eV〜1与当前的结果以及接触对V_(oc)的影响理论相一致。

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