Surfactant‐Free, Size‐Controllable, and Scalable Green Synthesis of ZIF‐8 Particles with Narrow Size Distribution by Tuning Key Reaction Parameters in Water Solvent

Author:

Kim Donggyun1,Park Jinhyeon1,Park Jisoo1,Jang Jieun1,Han Minsu2,Lim Si‐Hyung3,Ryu Du Yeol1,You Jungmok4,Zhu Wenkai5,Yamauchi Yusuke26,Kim Jeonghun1ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering Yonsei University 50 Yonsei‐ro, Seodaemun‐gu Seoul 03722 South Korea

2. Australian Institute for Bioengineering and Nanotechnology (AIBN) The University of Queensland Brisbane Queensland 4072 Australia

3. School of Mechanical Engineering Kookmin University Seoul 02707 Republic of Korea

4. Department of Plant & Environmental New Resources and Graduate School of Biotechnology College of Life Sciences Kyung Hee University 1732 Deogyeong‐daero, Giheung‐gu Yongin‐si Gyeonggi‐do 446‐701 South Korea

5. College of Chemistry and Materials Engineering Zhejiang A&F University Hangzhou 311300 China

6. Department of Materials Process Engineering Graduate School of Engineering Nagoya University Furo‐cho, Chikusa‐ku Nagoya 464‐8603 Japan

Abstract

AbstractThe chemical/physical properties and reliable performance of nanoporous materials are strongly influenced by the particle size and corresponding distribution. Among many types of MOFs, ZIF‐8, is still widely used and many studies have been conducted to control the particle size and uniformity of ZIF‐8 using surfactants and organic solvents. However, the use of surfactants and organic solvents process is expensive and may cause environmental pollution. For the first time, in this paper, a surfactant‐free, size‐controllable, and scalable green synthesis method of ZIF‐8 particles is reported using four reaction parameters (temperature, concentration, pouring time, and reactant ratio) that affect the formation of nuclei and growth of ZIF‐8 crystals. The as‐synthesized ZIF‐8 nanoparticles show great uniformity and controllable particle sizes in the wide range of 147–915 nm. In addition, a 2 L large‐scale synthesis of ZIF‐8 with narrow size distribution is developed by finely tuned particle size in water without any additives. To demonstrate the efficient utilization of nanopores according to the particle size and size distribution, an adsorption test is conducted on the ZIF‐8 nanoparticles. This study will support the synthesis of size‐controlled ZIF‐8 with narrow size distribution and their composites for achieving high performance in the emerging applications.

Funder

National Research Foundation

Korea Institute of Energy Technology Evaluation and Planning

Ministry of Trade, Industry and Energy

Ministry of Science, ICT and Future Planning

Publisher

Wiley

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