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Surface-modified inorganic porous material and fuel cell comprising the same as electrolyte

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TLDR
An inorganic porous material having at least one functional group exhibiting proton conductivity was selected from the group consisting of sulfonate groups and phosphate groups introduced in the surface thereof as mentioned in this paper.
Abstract
An inorganic porous material having at least one functional group exhibiting proton conductivity selected from the group consisting of sulfonate groups and phosphate groups introduced in the surface thereof; a method of modifying an inorganic porous material; and a fuel cell comprising the inorganic porous material as a solid electrolyte. There is provided a solid electrolyte film that exhibits high proton conductivity, is excellent in heat resistance and chemical resistance and is highly useful as an electrolyte of fuel cell or the like.

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Proton conducting titanate, polymer nano-composite membrane including the same, and fuel cell adopting the polymer nano-composite membrane

TL;DR: In this paper, a proton conducting titanate was used as a polymeric nano-composite membrane to improve the thermal stability, energy density, and fuel efficiency of fuel cells.
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TL;DR: In this paper, a proton conductive composite type electrolyte membrane is constructed by arranging and installing an electrolyte material in a plurality of spherical holes which an inorganic porous body has.
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TL;DR: In this paper, a polymeric nano-composite membrane has a structure in which a proton conducting polymer is intercalated between the layers of the conducting inorganic material having a layered structure.
References
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Proton-conductive body and electrochemical element using the proton-conductive body

TL;DR: In this paper, an organic compound comprising sulfonate as a block copolymer composed of conjugate diene units and aromatic vinyl units is used as a binder.
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Manufacturing method for protic conduction membrane and fuel cell consisting of the same

TL;DR: In this paper, a polymeric compound-inorganic compound composite was used to provide a protic conduction membrane for solid polymer fuel cell and practically a sufficient durability, which can be achieved by a manufacturing method that synthesized an inorganic compound with a silicon oxide and a phosphoric acid derivative.
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Proton conductive solid electrolyte and proton conductive solid electrolyte sheet

TL;DR: In this article, the authors proposed a heat-resistant solid electrolyte material having high proton conductivity of 10-3-10-1 S/cm over the wide range of temperature from room temperature to 100 deg.C or higher.
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Proton conductive material and electrochemical element using the same

TL;DR: In this paper, a proton conductive material consisting of a compound mainly consisting of silicon oxide and Br ϕ nsted acid and a thermoplastic elastomer is used for an electrochemical element.
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Electrochemical device and its usage

TL;DR: In this article, a fuel cell is provided with a negative electrode 2, a positive electrode 3, and a proton conductive part 1 held between these electrodes, made of a fullerenol electrolyte, and methanole and water are supplied to the negative electrode from a fuel supply opening 6.