Related Experiment Video
Updated: Jan 28, 2026

Molten-Salt Synthesis of Complex Metal Oxide Nanoparticles
Published on: October 27, 2018
Soft-Templated Sol-Gel Synthesis of Mesoporous Perovskite-Type Multicomponent Metal Oxide
Hanzo Tsubota1, Kazuki Inoue1, Wai Kian Tan2,3
1Department of Electrical and Electronic Information Engineering, Toyohashi University of Technology, 1-1 Hibarigaoka, Tempaku-cho, Toyohashi, Aichi 441-8580, Japan.
Abstract:
The high calcination temperature required for the crystallization of multicomponent metal oxides is a challenge because this treatment significantly reduces their specific surface area while increasing the crystallite size, thereby limiting their photocatalytic performances. In this study, we have addressed this issue for a multicomponent perovskite photocatalyst, (Bi0.2Na0.2K0.2La0.2Sr0.2)-TiO3 (BNKLST), by employing a soft-templating sol-gel method using Pluronic F-127. The synthesis process was optimized by adjusting the solution's pH to ensure uniform micelle self-assembly and by determining the optimum calcination temperature for the pore formation. This approach enabled the successful low-temperature synthesis of BNKLST, which retained a high specific surface area of 50.4 m2 g-1 at 400 °C. The resulting catalyst exhibited excellent photocatalytic activity, degrading methylene blue under UV irradiation (250-450 nm) at a rate more than six times faster than that obtained using commercial SrTiO3. These findings demonstrate that enhancing the specific surface area of multicomponent metal oxides through a soft-templating approach is an effective strategy in photocatalyst design.
More Related Videos
12:47Preparation and Use of Photocatalytically Active Segmented Ag|ZnO and Coaxial TiO2-Ag Nanowires Made by Templated Electrodeposition
Published on: May 2, 2014
11:49A Continuous-flow Photocatalytic Reactor for the Precisely Controlled Deposition of Metallic Nanoparticles
Published on: April 10, 2019
Related Concept Videos
Alkali Metals
Table 1: Properties of the alkali metals
Oxidation Numbers
Synthesis and Decomposition Reactions
DNA as a Genetic Template
DNA as a Genetic Template
Oxidation-Reduction Reactions