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- W2992912011 abstract "Mesopores in inorganic materials are attractive and important spaces for the development of proton conductors, because capillary condensation of water molecules occurs at relatively low relative humidity (RH), allowing for fast transport of protons without excessive humidification. Most such mesoporous inorganic compounds are constructed of silica and titania. In this study, we adopt SnP₂O₇ and Sn₀.₉₅Al₀.₀₅P₂O₇ as mesoporous frameworks. Since these pyrophosphates in themselves are proton-conducting materials, there may be synergy between the framework and mesopore spaces. Mesoporous SnP₂O₇ or Sn₀.₉₅Al₀.₀₅P₂O₇ was synthesized through a reaction between mesoporous SnO₂ or Sn₀.₉₅Al₀.₀₅O₁.₉₇₅ and phosphoric acid, respectively. At a reaction temperature of 250 °C, only the crystalline phase attributable to SnP₂O₇ was detected by X-ray diffraction. The obtained compounds showed hysteresis loops in the nitrogen gas adsorption/desorption isotherms, the analyses of which indicated mean pore diameters of ca. 7 nm for SnP₂O₇ and ca. 4 nm for Sn₀.₉₅Al₀.₀₅P₂O₇. Partially destroyed hexagonal mesopores were observed in transmission electron spectroscopy observations of these compounds. The proton conductivity of the mesoporous SnP₂O₇ was more than one order of magnitude higher than that of the nonporous SnP₂O₇ in the temperature range of 50–200 °C. Furthermore, the dependence of the proton conductivity on the RH was much larger for the mesoporous SnP₂O₇ than for the nonporous SnP₂O₇. Temperature-programmed desorption analysis of water vapor revealed that water molecules filling the mesopores through capillary condensation are responsible for the high proton conductivity of the mesoporous SnP₂O₇ at low RH. More importantly, this capillary condensation effect was enhanced by doping SnP₂O₇ with Al, which shifted the RH where the proton conductivity sharply increased to a lower value. The resultant proton conductivity at 150 °C reached 0.07 S cm⁻¹ at only 14% RH." @default.
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- W2992912011 date "2013-01-01" @default.
- W2992912011 modified "2023-09-28" @default.
- W2992912011 title "Design of proton-conducting Sn₀.₉₅Al₀.₀₅P₂O₇ with a mesoporous structure" @default.
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