Litcius/Paper detail

A Novel Molten Salt Mediated Synthesis of Mesoporous Metal Oxides with High Crystallization

Dongsheng Ma, Hanpeng Lu, Yu Zhou, Shuaihu Jiang, Duan Wang, Qin Yue

2024ACS Central Science13 citationsDOIOpen Access PDF

Abstract

High Resolution Image Download MS PowerPoint Slide 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 2, ZrO 2, SnO 2, Li 2 TiO 3 ) with high surface area (115–155 m 2 /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 2 microspheres loaded with Cu species exhibit excellent antibacterial performance and superior catalytic activity for the hydrogenation of nitrophenol with high conversion and cycling stability.

Topics & Concepts

Mesoporous materialCrystallizationMaterials scienceMolten saltChemical engineeringMetalSalt (chemistry)CatalysisMetal ions in aqueous solutionNanotechnologyChemistryOrganic chemistryMetallurgyEngineeringCatalytic Processes in Materials ScienceMesoporous Materials and CatalysisSupercapacitor Materials and Fabrication