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Synthesis and Thermoelectric Characterization of Lead Telluride Hollow Nanofibers

机译:碲化铅空心纳米纤维的合成及热电特性

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摘要

Lead telluride (PbTe) nanofibers were fabricated by galvanic displacement of electrospun cobalt nanofibers where their composition and morphology were altered by adjusting the electrolyte composition and diameter of sacrificial cobalt nanofibers. By employing Co instead of Ni as the sacrificial material, residue-free PbTe nanofibers were synthesized. The Pb content of the PbTe nanofibers was slightly affected by the Pb2+ concentration in the electrolyte, while the average outer diameter increased with Pb2+ concentration. The surface morphology of PbTe nanofibers was strongly dependent on the diameter of sacrificial nanofibers where it altered from smooth to rough surface as the Pb2+ concentration increased. Some of thermoelectric properties [i.e., thermopower (S) and electrical conductivity(σ)] were systematically measured as a function of temperature. Energy barrier height (Eb) was found to be one of the key factors affecting the thermoelectric properties–that is, higher energy barrier heights increased the Seebeck coefficient, but lowered the electrical conductivity.
机译:碲化铅(PbTe)纳米纤维是通过电纺钴纳米纤维的电位移制造的,其中通过调整牺牲钴纳米纤维的电解质组成和直径来改变其组成和形态。通过使用Co代替Ni作为牺牲材料,合成了无残留的PbTe纳米纤维。电解质中Pb 2 + 的浓度对PbTe纳米纤维中Pb含量的影响较小,而Pb 2 + 的平均外径则增大。 PbTe纳米纤维的表面形态在很大程度上取决于牺牲性纳米纤维的直径,随着Pb 2 + 浓度的增加,其表面从光滑表面变为粗糙表面。系统地测量了一些热电性质[即,热功率(S)和电导率(σ)]作为温度的函数。发现能垒高度(Eb)是影响热电性能的关键因素之一-即,更高的能垒高度会增加塞贝克系数,但会降低电导率。

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