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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controlling intermolecular redox-doping of naphthalene diimides
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Controlling intermolecular redox-doping of naphthalene diimides

机译:控制萘二亚胺的分子间氧化还原掺杂

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Naphthalene diimide (NDI) with tertiary amine side chains is used to n-dope a series of NDI derivatives of varying energy levels. We demonstrate a photoinduced, intermolecular redox-doping process in which a dimethylpropyl amine side chain attached to one NDI reduces another NDI derivative to form radical anions. The influence of the aromatic core substituents on energy levels, doping efficacy and radical anion stability is studied by cyclic voltammetry, UV-Vis and electron paramagnetic resonance (EPR) spectroscopy. In general, the HOMO energy level of the NDI is responsible for the doping process and the LUMO for air stability of the resulting radical anion. The most electron deficient NDI derivative having two cyano substituents displays the highest doping yield and yields air stable radical anions for both light- and thermally-induced doping. Thermal doping is further accompanied by morphologic changes that stabilize radical anions in air.
机译:萘二酰亚胺(NDI)与叔胺侧链用于N-DOPE一系列不同能量水平的NDI衍生物。 我们证明了一种光致诱导的分子间氧化氢掺杂方法,其中附着于一个NDI的二甲基丙基胺侧链减少了另一种NdI衍生物以形成自由基阴离子。 通过循环伏安法,UV-VIS和电子顺笔共振(EPR)光谱研究了芳香核取代基对能量水平,掺杂功效和自由基稳定性的影响。 通常,NDI的同性能水平负责掺杂工艺和用于所得的自由基阴离子的空气稳定性的LUMO。 具有两种氰基取代基的最缺乏的NDI衍生物显示出最高掺杂产率并产生用于光和热诱导的掺杂的空气稳定的自由基阴离子。 热掺杂进一步伴随着稳定空气中的自由基阴离子的形态学变化。

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