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首页> 外文期刊>Journal of Colloid and Interface Science >Self-generated hierarchically porous titania with high surface area: Photocatalytic activity enhancement by macrochannel structure
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Self-generated hierarchically porous titania with high surface area: Photocatalytic activity enhancement by macrochannel structure

机译:高表面积自生分级多孔二氧化钛:通过大通道结构增强光催化活性

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摘要

Various hierarchical porous titania with high surface area over 600m ~2/g have been synthesized via a spontaneous self-formation process from titanium alkoxides by a water adjusting approach using acetonitrile as reaction medium. The reactivity of metal alkoxides and the water content in acetonitrile medium on the resultant structure have been investigated. The porosities of the products were characterized by SEM, TEM and N _2 adsorption-desorption measurements. The observation on the evolution of porous structure with increasing water content in reaction system is essential for a better understanding of hierarchical porous structure formation over different length scales by this self-formation process. The creation of macro/micropores in photocatalytic titania materials has been found to enhance the photocatalytic activity due to both the action of macrochannels as light harvester and the easy diffusion effect of organic molecules. The present work shows clearly that hierarchically porous titania with the presence of macroporous structure and high surface area can be very efficient photocatalysts, suggesting their potential applications in water treatment as decontamination materials.
机译:采用乙腈为反应介质,通过水调节方法,自烷氧基钛通过自发自形成法合成了表面积超过600m〜2 / g的各种分级多孔二氧化钛。研究了金属醇盐的反应性和乙腈介质中的水含量对所得结构的影响。通过SEM,TEM和N _2吸附-脱附测量来表征产物的孔隙率。为了更好地理解通过这种自形成过程在不同长度尺度上分层的多孔结构的形成,观察反应体系中随着水含量增加而发生的多孔结构的演变至关重要。已经发现,由于大通道作为光收集器的作用和有机分子的容易扩散作用,在光催化二氧化钛材料中产生大孔/微孔可增强光催化活性。本工作清楚地表明,具有大孔结构和高表面积的分级多孔二氧化钛可以是非常有效的光催化剂,表明它们在水处理中作为去污材料的潜在应用。

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