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Photoreduction of CO2 over the well-crystallized ordered mesoporous TiO2 with the confined space effect

机译:具有良好空间效应的结晶良好的有序介孔TiO2上的CO2光还原

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Ordered mesoporous titanium dioxide with crystalline wall was successfully synthesized by combining evaporation induced self-assembly process with two-step calcination processes. The ordered mesoporous titanium dioxide not only shows a higher production efficiency of CH4, which is 71 times and 53 times higher than that of commercial titanium dioxide (P25) and disordered mesoporous titanium dioxide, respectively, but also exhibits a better stability for CO2 photoreduction. The remarkable performance of the ordered mesoporous titanium dioxide for CO2 photoreduction probably benefits from the confined space effect of ordered mesoporous structure because (1) the active sites exist not only on the surface of the particles, but also exist in the pores; (2) gas molecules collide with the pore walls more frequently in the case of Knudsen diffusion; (3) the highly ordered mesoporous structure develops a high-efficient CO2 adsorption ability, smooth flow of gas molecules and improved separation and transport of electron-hole. (C) 2014 Elsevier Ltd. All rights reserved.
机译:将蒸发诱导的自组装过程与两步煅烧过程相结合,成功地合成了具有晶体壁的有序介孔二氧化钛。有序介孔二氧化钛不仅显示出较高的CH4生产效率,分别比商品二氧化钛(P25)和无序介孔二氧化钛高71倍和53倍,而且对CO2光还原表现出更好的稳定性。有序介孔二氧化钛对CO2光还原的卓越性能可能受益于有序介孔结构的有限空间效应,因为(1)活性位不仅存在于颗粒表面,而且还存在于孔中; (2)在克努森扩散的情况下,气体分子更频繁地与孔壁碰撞; (3)高度有序的介孔结构具有高效的CO2吸附能力,气体分子的顺畅流动和改善的电子空穴的分离和传输。 (C)2014 Elsevier Ltd.保留所有权利。

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