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Enhanced n-Doping Efficiency of a Naphthalenediimide-BasedCopolymer through Polar Side Chains for Organic Thermoelectrics

机译:基于萘二甲酰亚胺的增强型n掺杂效率通过极性侧链的共聚物用于有机热电

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摘要

N-doping of conjugated polymers either requires a high dopant fraction or yields a low electrical conductivity because of their poor compatibility with molecular dopants. We explore n-doping of the polar naphthalenediimide–bithiophene copolymer p(gNDI-gT2) that carries oligoethylene glycol-based side chains and show that the polymer displays superior miscibility with the benzimidazole–dimethylbenzenamine-based n-dopant N-DMBI. The good compatibility of p(gNDI-gT2) and N-DMBI results in a relatively high doping efficiency of 13% for n-dopants, which leads to a high electrical conductivity of more than 10–1 S cm–1 for a dopant concentration of only 10 mol % when measured in an inert atmosphere. We find that the doped polymer is able to maintain its electrical conductivity for about 20 min when exposed to air and recovers rapidly when returned to a nitrogen atmosphere. Overall, solution coprocessing of p(gNDI-gT2) and N-DMBI results in a larger thermoelectric power factor of up to 0.4 μW K–2 m–1 compared to other NDI-based polymers.
机译:由于共轭聚合物与分子掺杂剂的相容性差,因此对其进行N掺杂要么需要高的掺杂剂比例,要么会产生低的电导率。我们研究了带有低聚乙二醇基侧链的极性萘二甲酰亚胺-联噻吩共聚物p(gNDI-gT2)的n掺杂,并显示该聚合物与基于苯并咪唑-二甲基苯胺的n-DMBI显示出优异的混溶性。 p(gNDI-gT2)与N-DMBI的良好相容性导致n型掺杂物的相对较高的掺杂效率为13%,从而导致高于10 -1 S的高电导率cm –1 ,当在惰性气氛中测量时,掺杂剂浓度仅为10 mol%。我们发现,掺杂的聚合物在暴露于空气时能够保持其电导率约20分钟,并在返回氮气气氛时迅速恢复。总体而言,与其他方法相比,p(gNDI-gT2)和N-DMBI的溶液协同处理可产生高达0.4μWK –2 m –1 的更大热电功率因数基于NDI的聚合物。

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