Versatile Mesoporous Microblocks Prepared by Pattern‐Induced Cracking of Colloidal Films

Author:

Lee Yunchan12,Jo Min‐Gi3,Kim Jaekyoung4,Kim Ji Hoon5,Kim Jae Jung6,Char Kookheon2,Yoon Hyunsik134ORCID

Affiliation:

1. Institute of Energy and Environment System Seoul National University of Science and Technology Seoul 01811 Republic of Korea

2. The National Creative Research Initiative Center for Intelligent Hybrids The World Class University Program for Chemical Convergence for Energy and Environment School of Chemical and Biological Engineering Seoul National University Seoul 08826 Republic of Korea

3. Department of Chemical and Biomolecular Engineering Seoul National University of Science and Technology Seoul 01811 Republic of Korea

4. Department of Energy and Chemical Engineering Seoul National University of Science and Technology Seoul 01811 Republic of Korea

5. School of Chemical and Biological Engineering Seoul National University Seoul 08826 Republic of Korea

6. Department of Chemical Engineering Hongik University Seoul 04066 Republic of Korea

Abstract

AbstractMesoporous microparticles have the potential to be used in various fields, such as energy generation, sensing, and the environmental field. Recently, the process of making homogeneous microparticles in an economical and environmentally friendly way has gained much attention. Herein, rectangular mesoporous microblocks of various designs are produced by manipulating the fragmentation of colloidal films consisting of micropyramids while controlling the notch angles of pyramidal edges. During calcination of the colloidal films, cracks are generated in the valleys of micropyramids acting as notches, and the angle of notches can be controlled by the prepattern underneath the micropyramids. By changing the location of notches with sharp angles, the shape of microblocks can be controlled with excellent uniformity. After detaching the microblocks from substrates, mesoporous microparticles of various sizes with multiple functions are easily produced. This study demonstrates anti‐counterfeiting functions by encoding the rotation angles of rectangular microblocks of various sizes. In addition, the mesoporous microparticles can be utilized for separating desired chemicals mixed with chemicals of different charges. The method of fabricating size‐tunable functionalized mesoporous microblocks can be a platform technology to prepare special films and catalysts and for environmental applications.

Funder

National Research Foundation of Korea

Ministry of Education

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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