Development of Oxide and Silicide Thermoelectric Materials and Modules

来源 :The 5th International Congress on Ceramics, ICC5(第五届国际陶瓷大会) | 被引量 : 0次 | 上传用户:dota1231
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Thermoelectric conversion is attracting attention because it is the strongest candidate to generate electricity from dilute waste heat sources.Waste heat higher than 473 K is high quality energy and the amount of the energy is huge.Oxide materials are considered to be promising ones because of their durability against high temperature,no content of toxic elements etc.The misfit CoO2 layered systems show high thermoelectric figures of merit at high temperature in air.
其他文献
  In recent years,the performance of conventional thermoelectric materials such as alloys based on Bi-Te,Pb-Te and Si-Ge has been remarkably enhanced through
会议
  The thermal stability of BiCuSeO material in air has been investigated with the traditional thermoelectric alloy AgPb20SbTe20 as a comparison.The phase stru
会议
  I summarize the technical developments of micro thermoelectric devices and its applications in the field of safety,clinical diagnosis,and energy harvesting.
会议
细根是森林生态系统中植物吸收水分和养料的主要器官,是元素循环的重要组成部分,细根具有复杂的分枝系统,其形态特征对细根吸收以及周转的功能具有重要影响。本研究试图通过
  We have synthesized composite materials with enhanced thermoelectricity by exfoliation-reassembly route.Layered materials such as sodium cobalt oxide,bismut
会议
  Bismuth telluride(Bi2Te3)based compounds are known as the best commercially used thermoelectric(TE)materials at ambient temperature from 300 K to 500 K,whic
会议
  Radioisotope Thermoelectric Generators(RTGs)generate electrical power by converting the heat released from the nuclear decay of radioactive isotopes(typical
会议
  Recent advances on layered TiS2(n-type)and complex cubic Cu12Sb4S13 tetrahedrite(p-type)compounds are reported here.Due to the absence of toxic and expensiv
会议
岩溶塌陷是岩溶地区一种常见的地质灾害现象,是指在岩溶地区,由于受到自然或人类活动的影响,导致下部可溶岩层中的溶洞或上覆土层中的土洞,在地面形成塌陷坑的一种岩溶动力作
为了探讨鹅掌楸属植物杂种优势形成的分子机理,以其亲本及杂种Fl的叶芽为材料,利用DDRT-PCR技术,分析了杂种及其亲本基因表达的差异,主要结论如下:   1.Trizol法可获得较高质量