Fe-Sm-Si热电合金的电学特性  被引量:3

Electrical Properties of Fe-Sm-Si Thermoelectric Alloys

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作  者:李伟文[1] 赵新兵[1] 朱铁军[1] 邬震泰[1] 曹高劭[1] 

机构地区:[1]浙江大学硅材料国家重点实验室,浙江杭州310027

出  处:《稀有金属材料与工程》2004年第1期51-54,共4页Rare Metal Materials and Engineering

基  金:国家自然科学基金资助项目(59971044)

摘  要:采用悬浮熔炼法制备了Fe-Sm-Si热电合金材料,并研究了其电学输运特性。实验表明:在Fe1-xSmxSi2合金中,Sm为n型掺杂元素,Sm轻掺杂时,试样仍为p型,随着Sm量的增加,试样的Seebeck系数和功率因子都降低;Sm含量x 0.4的高Sm硅化物试样为n型,其中,热电性能最好的试样成分为Fe0.6Sm0.4Si2,其电阻率在10-5W穖数量级,而Seebeck系数仍达到80 mV稫-1左右。其机理被认为是由于Sm的4f层电子的贡献。Iron samarium silicide (Fe-Sm-Si) thermoelectric alloys have been prepared by vacuum levitation melting and their electric transport properties were studied. It was found that Sm is an n-type dopant in the Fe1-xSmxSi2 alloys. Both the Seebeck coefficient and the power factor of p-type samples lightly doped with Sm decrease with increasing Sm dopant level. High samarium silicides with x greater than or equal to 0.4 are n-type alloys. The sample with the best thermoelectric properties in the present work has a composition of Fe0.6SM0.4Si2, with a low electric resistivity of about 10(-5)Omega(.)m and a satisfactory Seebeck coefficient of about 80muV(.)K(-1) due to the contribution of the 4f-electrons of Sm.

关 键 词:热电材料 电学性能 功率因子 FeSi2 

分 类 号:TN304[电子电信—物理电子学]

 

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