Kimura Tatsuo
National Institute of Advanced Industrial Science and Technology (AIST) Sakurazaka, Moriyama-ku Nagoya 463-8560 Japan
RSC Adv. 2024 May 22;14(24):16704-16712. doi: 10.1039/d4ra01674b.
The morphology of surfactant-assisted mesoporous metal oxides was tuned to obtain high surface-area particles by utilizing the synthetic conditions for fabricating transparent thin films through an evaporation-induced self-assembly (EISA) process. For investigating their potential applications, especially for designing heterogeneous catalysts, mesoporous metal oxides should be obtained in powder forms; however, a serious limitation associated with their reproducibility persists. Herein, along with a rapid optimization approach, starting from determining and improving chemical composition for the fabrication of mesoporous metal oxide films, an advanced approach to obtain highly porous metal oxide powders is presented using a temperature-controlled spray-drying process with step-by-step but smooth optimization by combining several EISA processes, involving the utilization of a precursor solution optimized for a slow-drying process in the case of ceria (CeO) using poly(styrene)--poly(ethylene oxide) (PS--PEO).
通过利用蒸发诱导自组装(EISA)过程制备透明薄膜的合成条件,对表面活性剂辅助的介孔金属氧化物的形态进行调控,以获得高比表面积的颗粒。为了研究它们的潜在应用,特别是用于设计多相催化剂,介孔金属氧化物应以粉末形式获得;然而,与它们的可重复性相关的严重限制仍然存在。在此,除了一种快速优化方法外,从确定和改进用于制备介孔金属氧化物薄膜的化学成分开始,还提出了一种先进的方法,即使用温度控制的喷雾干燥过程,通过结合几种EISA过程进行逐步但平稳的优化,以获得高度多孔的金属氧化物粉末,其中涉及在二氧化铈(CeO)的情况下使用聚(苯乙烯)-聚(环氧乙烷)(PS-PEO)对前体溶液进行优化,用于缓慢干燥过程。