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    • 2. 发明授权
    • Thermoelectric conversion element, thermoelectric conversion module, method for producing thermoelectric conversion element
    • 热电转换元件,热电转换模块,热电转换元件的制造方法
    • US09065011B2
    • 2015-06-23
    • US12637855
    • 2009-12-15
    • Sachiko HayashiTakanori Nakamura
    • Sachiko HayashiTakanori Nakamura
    • H01L35/22H01L35/32
    • H01L35/22H01L35/32
    • A thermoelectric conversion element, a thermoelectric conversion module, and a method for producing a thermoelectric conversion element are provided, each of the element and the module having a low contact resistance between a p-type thermoelectric conversion material and an n-type thermoelectric conversion material and being capable of being used at high temperatures without deterioration due to oxidation. A p-type oxide thermoelectric conversion material is primarily made of a substance having a layered perovskite structure represented by the formula: A2BO4, wherein A includes at least La, and B represents at least one element including at least Cu. An n-type oxide thermoelectric conversion material is primarily made of a substance having a layered perovskite structure represented by the formula: D2EO4, wherein D includes at least one of Pr, Nd, Sm, and Gd, and E represents at least one element including at least Cu. The p-type oxide thermoelectric conversion material, the n-type oxide thermoelectric conversion material, and a composite insulating material are co-sintered. A glass having a softening point of about 550° C. to about 750° C. is used as a glass defining the composite insulating material.
    • 提供一种热电转换元件,热电转换模块和用于制造热电转换元件的方法,元件和模块中的每一个在p型热电转换材料和n型热电转换材料之间具有低接触电阻 并且能够在高温下使用而不会由于氧化而劣化。 p型氧化物热电转换材料主要由具有由式A2BO4表示的层状钙钛矿结构的物质制成,其中A至少包括La,B表示至少一种至少包含Cu的元素。 n型氧化物热电转换材料主要由具有由式D2EO4表示的层状钙钛矿结构的物质制成,其中D包括Pr,Nd,Sm和Gd中的至少一种,E表示至少一种元素,包括 至少Cu。 p型氧化物热电转换材料,n型氧化物热电转换材料和复合绝缘材料共烧结。 使用软化点为约550℃至约750℃的玻璃作为限定复合绝缘材料的玻璃。
    • 4. 发明申请
    • Thermoelectric Conversion Module
    • 热电转换模块
    • US20110226304A1
    • 2011-09-22
    • US13109259
    • 2011-05-17
    • Sachiko HayashiTakanori Nakamura
    • Sachiko HayashiTakanori Nakamura
    • H01L35/04H01L35/22
    • H01L35/32
    • A thermoelectric conversion module that generates electric power by applying a temperature difference to a pn junction between a p-type oxide thermoelectric conversion material and an n-type oxide thermoelectric conversion material, at least one surface of a pair of surfaces to which a temperature difference is to be applied is covered with an insulating film. Surfaces other than the surfaces to which the temperature difference is to be applied are also covered with an insulating film. The p-type oxide thermoelectric conversion material, the n-type oxide thermoelectric conversion material, an insulating material arranged therebetween, and the insulating film that covers a predetermined region of the surface are co-sintered.
    • 一种热电转换模块,其通过向p型氧化物热电转换材料和n型氧化物热电转换材料之间的pn结施加温差而产生电力,所述热电转换模块的一个表面的至少一个表面具有温差 被覆盖有绝缘膜。 除了要施加温度差的表面之外的表面也被绝缘膜覆盖。 p型氧化物热电转换材料,n型氧化物热电转换材料,布置在其间的绝缘材料和覆盖表面的预定区域的绝缘膜被共烧结。