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Naphthalene Tetracarboxydiimide-Based n-Type Polymers with Removable Solubility via Thermally Cleavable Side Chains

机译:萘四羧酸二亚胺基n型聚合物,可通过热裂解侧链除去溶解度

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Multilayer solution-processed devices in organic electronics show the tendency of intermixing of subsequently deposited layers. Here, we synthesize naphthalene tetracarboxydiimide (NDI)-based n-type semiconducting polymers with thermally cleavable side chains which upon removal render the polymer insoluble. Infrared and photoelectron spectroscopy were performed to investigate the pyrolysis process. Characterization of organic field-effect transistors provides insight into charge transport. After the pyrolysis homogeneous films could be produced which are insoluble in the primary solvent. By varying curing temperature and time we show that these process parameters govern the amount of side chains in the film and influence the device performance.
机译:有机电子产品中经过多层溶液处理的器件显示出随后沉积的层相互混合的趋势。在这里,我们合成了基于萘四甲酸二亚胺(NDI)的n型半导体聚合物,该聚合物具有可热裂解的侧链,该侧链在去除后会导致聚合物不溶。进行了红外和光电子能谱研究热解过程。有机场效应晶体管的特性提供了电荷传输的洞察力。在热解之后,可以产生不溶于第一溶剂的均质膜。通过改变固化温度和时间,我们表明这些工艺参数控制着薄膜中侧链的数量并影响了器件性能。

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