Nickel‐Tin Nanoalloy Supported ZnO Catalysts from Mixed‐Metal Zeolitic Imidazolate Frameworks for Selective Conversion of Glycerol to 1,2‐Propanediol

Author:

Nimbalkar Ajaysing S.12,Oh Kyung‐Ryul3,Han Seung Ju4,Yun Gwang‐Nam12,Cha Seung Hyeok1,Upare Pravin P.5,Awad Ali12,Hwang Dong Won12ORCID,Hwang Young Kyu12

Affiliation:

1. Research Center for Nanocatalysts Korea Research Institute of Chemical Technology Daejeon 34114 South Korea

2. Department of Advanced Materials and Chemical Engineering University of Science and Technology Daejeon 34113 South Korea

3. Department of Chemical Engineering & Materials Science University of Minnesota Minneapolis Minnesota 55455 United States

4. C1 Gas and Carbon Convergent Research Center Korea Research Institute for Chemical Technology Dajeon 34114 South Korea

5. Activon Co. Ltd. Ochang South Korea

Abstract

AbstractThe successful synthesis of finely tuned Ni1.5Sn nanoalloy phases containing ZnO catalyst with a small particle size (6.7 nm) from a mixed‐metal zeolitic imidazolate framework (MM‐ZIF) is investigated. The catalyst was evaluated for the efficient production of 1,2‐propanediol (1,2‐PDO) from crude glycerol and comprehensively characterized using several analytical techniques. Among the catalysts, 3Ni1Sn/ZnO (Ni/Sn=3/1) showed the best catalytic performance and produced the highest yield (94.2 %) of 1,2‐PDO at ~100 % conversion of glycerol; it also showed low apparent activation energy (15.4 kJ/mol) and excellent stability. The results demonstrated that the synergy between Ni−Sn alloy, finely dispersed Ni metallic sites, and the Lewis acidity of SnOx species‐loaded ZnO played a pivotal role in the high activity and selectivity of the catalyst. The confirmation of acetol intermediate and theoretical calculations verify the Ni1.5Sn phases provide the least energetic pathway for the formation of 1,2‐PDO selectively. The reusability of solvent for successive ZIF synthesis, along with the excellent recyclability of the ZIF‐derived catalyst, enables an overall sustainable process. We believe that the present synthetic protocol that uses MM‐ZIF for the conversion of various biomass‐derived platform chemicals into valuable products can be applied to various nanoalloy preparations.

Funder

National Research Foundation

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

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