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首页> 外文期刊>Synthetic Metals >Thermoelectric figure of merit of τ-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_(1+y), (y <= 0.875) and (TMTSF)_2PF_6
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Thermoelectric figure of merit of τ-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_(1+y), (y <= 0.875) and (TMTSF)_2PF_6

机译:τ-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_(1 + y),(y <= 0.875)和(TMTSF)_2PF_6的热电品质因数

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摘要

Electrical resistivity, thermopower and thermal conductivity were measured simultaneously for t-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_(1+y), (y <= 0.875) and (TMTSF)_2PF_6, respectively. The thermoelectric figure of merit 2 of the materials is determined by combining these transport coefficients. It was found that the dimensionless figure of merit ZT of T-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_((1+y)), (y <= 0.875) amounts to 0.042 at 130 K. This relatively large ZT is due to large thermopower and small thermal conductivity measured by an improved method as compared with that previously reported by the present authors.
机译:同时测量了t-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_(1 + y),(y <= 0.875)和(TMTSF)_2PF_6的电阻率,热功率和热导率。通过组合这些传输系数来确定材料的热电品质因数2。发现在130 K时T-(EDO-S,S-DMEDT-TTF)_2(AuBr_2)_((1 + y)),(y <= 0.875)的无量纲品质因数ZT等于0.042。与本作者先前报道的相比,这种相对较大的ZT是由于通过改进方法测得的较大的热功率和较小的导热率。

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