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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Mesoporous α-Fe2O3 membranes as proton conductors: Synthesis by microwave-assisted sol-gel route and effect of their textural characteristics on water uptake and proton conductivity
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Mesoporous α-Fe2O3 membranes as proton conductors: Synthesis by microwave-assisted sol-gel route and effect of their textural characteristics on water uptake and proton conductivity

机译:介孔α-Fe2O3膜作为质子导体:微波辅助溶胶-凝胶法合成及其结构特征对吸水率和质子传导性的影响

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摘要

This paper reports novel inorganic proton exchange electrolytes based on mesoporous α-Fe2O3 ceramic membranes. The unsupported mesoporous hematite proton ceramic membranes with high specific surface areas, high pore volumes, and narrow pore size distributions have been synthesized from a hydro-lytic ferric oxide polymer prepared by a microwave-assisted sol-gel route. The effect of their textural characteristics on water uptake and proton conductivity has been studied. Microwave heating allows us to obtain homogeneous hydrosols at short times (2 s) meanwhile conventional heating gives rise to inhomogeneities in the hydrosol independently of heating times. Electron diffraction TEM observations show that the xerogels calcined at 200 °C are polycrystalline in nature and correspond to α-Fe2O3 in accordance with the two characteristic vibrations in hematite observed by FTIR spectroscopy. According to EMF measurements, proton transport is observed in these ceramic membranes and shows an Arrhenius dependence on temperature for all relative humidities studied. A sigmoi-dal dependence of the water uptake and the proton conductivity with the RH at a constant temperature was observed with the greatest increase detected between 58% and 81% RH. The pore volume and the average pore size of the α-Fe2O3 mesoporous ceramic membranes seem to be the main factors which influence the water uptake and consequently the proton conductivity in the studied ranges. The membranes with the largest pore volume, and the largest pore size have the highest water uptake and in turn the highest values of proton conductivity in the whole range of relative humidities (RHs). According to the activation energy values, proton migration in this kind of materials could be dominated by the Grot-thuss mechanism in the whole range of RH.
机译:本文报道了基于介孔α-Fe2O3陶瓷膜的新型无机质子交换电解质。由微波辅助溶胶-凝胶法制备的水解三氧化二铁合成了具有高比表面积,高孔体积和窄孔径分布的无支撑介孔赤铁矿质子陶瓷膜。研究了它们的质地特性对吸水率和质子传导率的影响。微波加热使我们能够在短时间内(2 s)获得均质的水溶胶,而常规加热会导致水溶胶中的不均匀性与加热时间无关。电子衍射TEM观察表明,根据FTIR光谱法观察到的赤铁矿中的两种特征振动,在200℃下煅烧的干凝胶本质上是多晶的并且对应于α-Fe2O3。根据EMF的测量,在这些陶瓷膜中观察到了质子传输,并显示了在研究的所有相对湿度下,Arrhenius对温度的依赖性。观察到在恒定温度下相对湿度下吸水率和质子传导率的信号依赖性,在RH的58%和81%之间发现最大的增加。 α-Fe2O3介孔陶瓷膜的孔体积和平均孔径似乎是影响吸水率并因此影响质子传导率的主要因素。具有最大孔体积和最大孔径的膜在整个相对湿度(RHs)范围内具有最高的吸水率,进而具有最高的质子传导率值。根据活化能值,质子在这种材料中的迁移在整个相对湿度范围内都可以由格罗特-苏斯机理决定。

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