Ma Dongsheng, Lu Hanpeng, Zhou Yu, Jiang Shuaihu, Wang Duan, Yue Qin
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu 610054, China.
Orthopedic Research Institution, Department of Orthopedics, West China Hospital, Sichuan University, Chengdu 610041, China.
ACS Cent Sci. 2024 Feb 26;10(3):676-683. doi: 10.1021/acscentsci.3c01462. eCollection 2024 Mar 27.
The controlled synthesis of mesoporous metal oxides remains a great challenge because the uncontrolled assembly process and high-temperature crystallization can easily destroy the mesostructure. Herein, we develop a facile, versatile, low-cost, and controllable molten salt assisted assembly strategy to synthesize mesoporous metal oxides (e.g., CeO, ZrO, SnO, LiTiO) with high surface area (115-155 m/g) and uniform mesopore size (3.0 nm). We find this molten salt mediated assembly enables the desolvation of the precursors and forms bare metal ions, enhances their coordination interaction with the surfactant, and promotes their assembly into a mesostructure. Furthermore, the molten salt assisted crystallization process can lower the collision probability of the target metal atom, inhibit its further growth into large crystals, and achieve a well-maintained mesostructure with high crystallization. Furthermore, this method can be expanded to synthesize various structured mesoporous metal oxides, including hollow spheres, nanotubes, and nanosheets by introducing the carbon template. The obtained mesoporous CeO microspheres loaded with Cu species exhibit excellent antibacterial performance and superior catalytic activity for the hydrogenation of nitrophenol with high conversion and cycling stability.
介孔金属氧化物的可控合成仍然是一个巨大的挑战,因为不受控制的组装过程和高温结晶很容易破坏介观结构。在此,我们开发了一种简便、通用、低成本且可控的熔盐辅助组装策略,以合成具有高比表面积(115 - 155 m²/g)和均匀介孔尺寸(3.0 nm)的介孔金属氧化物(如CeO、ZrO、SnO、LiTiO)。我们发现这种熔盐介导的组装能够使前驱体去溶剂化并形成裸金属离子,增强它们与表面活性剂的配位相互作用,并促进它们组装成介观结构。此外,熔盐辅助结晶过程可以降低目标金属原子的碰撞概率,抑制其进一步生长成大晶体,并实现具有高结晶度的良好维持的介观结构。此外,通过引入碳模板,该方法可以扩展到合成各种结构的介孔金属氧化物,包括空心球、纳米管和纳米片。所制备的负载铜物种的介孔CeO微球表现出优异的抗菌性能以及对硝基苯酚加氢的卓越催化活性,具有高转化率和循环稳定性。