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High temperature and water-based evaporation-induced self-assembly approach for facile and rapid synthesis of nanocrystalline mesoporous TiO2

机译:高温和水基蒸发诱导的自组装方法,用于纳米晶介孔TiO2的快速合成

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摘要

Various appealing applications of mesoporous TiO2 continuously spur research on related mesostructural design as well as innovations in preparation. This paper reports a novel high temperature and water-based evaporation-induced self-assembly (HW-EISA) approach based on a simple ternary templating system (peroxotitanic acid/P123/H2O), enabling the facile and rapid synthesis of nanocrystalline mesoporous TiO2 with unusual structures: high surface areas (140-240 m~2 g~(-1)), ultra-large mesopores (20-30 nm)/ pore volumes (0.7-1.0 cm~3 g~(-1)) and tunable bicrystallinity (anatase plus rutile). The unusual templating and subsequent decomposition behaviors of P123 were newly unveiled to play crucial and multiple roles in inducing self-assembly between peroxotitanic acid and P123 for final meso-TiO2 with ultra-large mesopores/pore volumes during the HW-EISA and helping preserve the integrity of mesostructures during calcination and rendering bicrystallinity in the titania frameworks as well. Other PEO-based nonionic surfactants were also demonstrated to.be applicable in producing similar mesostructures. The photocatalytic testing results showed that both high surface areas and the synergistic effects of bicrystallinity of anatase plus rutile are of great significance in enhancing the photocatalytic properties of meso-TiO2.
机译:介孔TiO2的各种吸引人的应用不断推动着相关介孔结构设计以及制备创新的研究。本文报告了一种基于简单的三元模板系统(过氧钛酸/ P123 / H2O)的新颖的高温水基蒸发诱导自组装(HW-EISA)方法,该方法能够快速,快速地合成纳米晶介孔TiO2与不寻常的结构:高表面积(140-240 m〜2 g〜(-1)),超大中孔(20-30 nm)/孔体积(0.7-1.0 cm〜3 g〜(-1))和可调双结晶度(锐钛矿加金红石)。新发现的P123的异常模板和随后的分解行为在诱导过氧钛酸与P123之间的自组装过程中起着至关重要的多重作用,在最终HISA-EISA中最终具有中等尺寸/孔体积的超细TiO2可以自我保护,并有助于保护煅烧过程中介观结构的完整性,以及在二氧化钛骨架中呈现双结晶性。还证明了其他基于PEO的非离子表面活性剂可用于生产类似的介孔结构。光催化测试结果表明,高比表面积和锐钛矿与金红石双结晶度的协同效应对提高介孔TiO2的光催化性能具有重要意义。

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