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Formation of Ion Pairs and Charge-Transfer Complexes in the p-Doping of Organic Semiconductors

机译:在有机半导体的p掺杂中形成离子对和电荷转移复合物

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The formation of ion pairs (IPA) through integer charge transfer and ground-state charge-transfer complexes (CPXs) with only fractional charge transfer are the two known mechanisms in the molecular doping of conjugated polymers and molecules, which form the material class of organic semiconductors (OSCs). As it entails no immediate ionization of the OSC, CPX formation is regarded as detrimental to the doping efficiency. For IPA formation to occur, a match between the electron affinity (EA) of the p-dopant and the ionization energy (IE) of the OSC is expected as crucial, while their pronounced frontier molecular orbital overlap should promote CPX formation instead.
机译:通过整数电荷转移和基线电荷转移复合物(CPX)形成离子对(IPA),其仅具有分数电荷转移是共轭聚合物和分子的分子掺杂中的两种已知机制,其形成有机材料类 半导体(OSC)。 由于它不需要立即电离OSC,因此CPX形成被视为对掺杂效率有害。 对于发生IPA的形成,预期偏移和离子化能量(IE)的电子亲和力(EA)之间的匹配预计将作为至关重要,而其明显的前沿分子轨道重叠应促进CPX形成。

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