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Morphology Determines Conductivity and Seebeck Coefficient in Conjugated Polymer Blends

机译:形态学在共轭聚合物共混物中确定导电性和塞贝克系数

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The impact of nanoscale morphology on conductivity and Seebeck coefficient in p-type doped all-polymer blend systems is investigated. For a strongly phase separated system (P3HT:PTB7), we achieve a Seebeck coefficient that peaks at S similar to 1100 mu V/K with conductivity sigma similar to 3 x 10(-3) S/cm for 90% PTB7. In marked contrast, for well-mixed systems (P3HT:PTB7 with 5% diiodooctane (DIO), P3HT:PCPDTBT), we find an almost constant S similar to 140 mu V/K and sigma similar to 1 S/cm despite the energy levels being (virtually) identical in both cases. The results are interpreted in terms of a variable range hopping (VRH) model where a peak in S and a minimum in a arise when the percolation pathway contains both host and guest sites, in which the latter acts as energetic trap. For well-mixed blends of the investigated compositions, VRH enables percolation pathways that only involve isolated guest sites, whereas the large distance between guest clusters in phase separated blends enforces (energetically unfavorable) hops via the host. The experimentally observed trends are in good agreement with the results of atomistic kinetic Monte Carlo simulations accounting for the differences in nanoscale morphology.
机译:研究了纳米级形态对P型掺杂全聚合物共混物系统的电导率和塞贝克系数的影响。对于强相位分离的系统(P3HT:PTB7),我们在类似于1100μmV/ k的情况下达到类似于3×10(3)S / cm的塞贝克系数,其具有90%PTB7。在标记的对比度下,对于良好的混合系统(P3HT:PTB7具有5%二碘辛烷(DIO),P3HT:PCPDTBT),尽管有能量,我们发现类似于140 mu V / K和Sigma的几乎恒定的s两种情况下的水平(几乎)相同。结果是根据可变范围跳跃(VRH)模型来解释,其中当渗透途径包含宿主和访客网站时出现S的峰值和最小值,其中后者作为充满活力的陷阱。对于所研究的组合物的漂亮共混物,VRH能够涉及涉及孤立的嘉宾网站的渗透途径,而相分离的混合中的客座簇之间的大距离能够通过主机执行(能源上不利)跳跃。实验观察到的趋势与原子动力学蒙特卡罗模拟结果符合纳米级形态的差异的结果。

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