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Increasing the thermopower of crown-ether-bridged anthraquinones

机译:增加crown-ether-bridged的热电动势蒽醌类

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We investigate strategies for increasing the thermopower of crown-ether-bridged anthraquinones. The novel design feature of these molecules is the presence of either (1) crown-ether or (2) diaza-crown-ether bridges attached to the side of the current-carrying anthraquinone wire. The crown-ether side groups selectively bind alkali-metal cations and when combined with TCNE or TTF dopants, provide a large phase-space for optimising thermoelectric properties. We find that the optimum combination of cations and dopants depends on the temperature range of interest. The thermopowers of both 1 and 2 are negative and at room temperature are optimised by binding with TTF alone, achieving thermpowers of -600 mu V K-1 and -285 mu V K-1 respectively. At much lower temperatures, which are relevant to cascade coolers, we find that for 1, a combination of TTF and Na+ yields a maximum thermopower of -710 mu V K-1 at 70 K, whereas a combination of TTF and Li+ yields a maximum thermopower of -600 mu V K-1 at 90 K. For 2, we find that TTF doping yields a maximum thermopower of -800 mu VK-1 at 90 K, whereas at 50 K, the largest thermopower (of -600 mu V K-1) is obtain by a combination TTF and K+ doping. At room temperature, we obtain power factors of 73 mu W m(-1) K-2 for 1 (in combination with TTF and Na+) and 90 mu W m(-1) K-2 for 2 (with TTF). These are higher or comparable with reported power factors of other organic materials.
机译:我们调查的策略增加热电动势的crown-ether-bridged蒽醌类。分子的存在是(1)冠醚或(2)diaza-crown-ether桥梁附着在载流蒽醌。选择性地结合碱金属阳离子和当结合TCNE或TTF掺杂物,提供一个为优化热电大相空间属性。阳离子和掺杂物取决于温度感兴趣的范围。2 -和在室温下优化通过与TTF单独绑定,实现thermpowers -600亩V V k - 1 k - 1和-285亩分别。级联相关冷却器,我们发现1,结合TTF和Na +收益率最大热电动势-710亩V K - 1在70 K,而一个TTF和李+收益率最大热电动势-600亩V K - 1 90 K。发现TTF掺杂收益率最大的热电动势-800亩VK-1在90 K,而在50 K最大的热电动势(-600亩V k - 1)是获得通过组合TTF和K +掺杂。温度,我们获得权力因素73亩W(1) K-2 1(结合TTF和Na +)和90亩W m (1) K-2 2 (TTF)。更高的或类似的报道力量因素其他有机材料。

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