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One pot solution combustion synthesis of highly mesoporous hematite for photocatalysis

机译:一锅溶液燃烧法合成高介孔赤铁矿

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摘要

Iron oxides were synthesized by solution combustion synthesis using glycine (fuel) and ferric nitrate (oxidizer) as raw materials. The effects of the fuel to oxidizer ratio, phi, on the combustion behavior, phase, morphology and surface area of the products were systematically studied. Pure hematite was synthesized directly by the combustion of the precursors under fuel-lean conditions in one step without further heat treatment, simply by selecting a proper fuel to oxidizer ratio, phi. The hematite has a highly mesoporous structure with specific surface area of 103 m(2) g(-1) and an average size of about 20 nm, which was obtained at phi=0.3. The hematite displays a continuous absorption band in the visible region. The photocatalytic activity of the hematite was evaluated by degrading the methylene blue pollutant in water at ambient temperature. The synthesized mesoporous hematite is a promising visible light photocatalysts for organics decomposition. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:以甘氨酸(燃料)和硝酸铁(氧化剂)为原料,通过固溶燃烧合成铁氧化物。系统地研究了燃料与氧化剂的比例phi对产品燃烧行为,相,形态和表面积的影响。通过在贫燃料条件下一步燃烧前驱体,无需进一步热处理即可直接合成纯赤铁矿,只需选择合适的燃料与氧化剂比例phi即可。赤铁矿具有高度介孔的结构,比表面积为103 m(2)g(-1),平均大小约为20 nm,在phi = 0.3时可获得。赤铁矿在可见光区域显示出连续的吸收带。通过在环境温度下降解水中的亚甲基蓝污染物来评估赤铁矿的光催化活性。合成的介孔赤铁矿是一种有前途的可见光降解有机物的光催化剂。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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