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- W2020072950 abstract "The local Seebeck coefficient αl was measured at a step of 0.5mm along the cylindrical M∕T∕M and M∕T∕M∕T∕M (M=Cu or Ni and T=Bi or Bi0.88Sb0.12) composites welded with T, using two thermocouples set at an interval of 2mm, in order to investigate the reason why the resultant Seebeck coefficient α of these composites is enhanced significantly. When one probe is placed on T and another on metal M, αl of M∕T∕M has a local maximum much higher in absolute value than that of the intrinsic thermoelectric material T, while when both are put on T, αl was almost the same as those of thermoelectric materials T. As a result, the enhancement in the resultant α of composites was thus found to be attributed to an enhancement in αl in the region near the boundary of T, where the barrier thermo-emf is produced by a sharp temperature gradient generated at the interface. A similar phenomenon was also observed for touching M∕T composites. However, the resultant α of M∕T∕M∕T∕M was lower than that of M∕T∕M, so that the multilayering of the thermoelectric material has no effect on the enhancement in α. Of course, this increase in the resultant α of composites results in the improvement of the energy conversion coefficient when they are employed for thermoelectric generators." @default.
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- W2020072950 date "2006-06-15" @default.
- W2020072950 modified "2023-09-24" @default.
- W2020072950 title "Distribution of local Seebeck coefficient in M∕T∕M and M∕T∕M∕T∕M (M=Cu or Ni and T=Bi or Bi0.88Sb0.12) composite materials" @default.
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- W2020072950 doi "https://doi.org/10.1063/1.2207718" @default.
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