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Yoo, Changho
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Single-Atom Iridium-Catalyst-Embedded Zeolitic Imidazolate Frameworks for CO(2 )and Glycerol Transformations

Author(s)
Oh, Kyung-RyulYun, Gwang-NamKim, Ki-DukCheong, Yeon-JooYoo, ChanghoPrihatno, FajarJang, Hye-YoungValekar, Anil H.Cha, Ga-YoungLee, MijungJung, JaehoonKwon, Young-UkHwang, Young Kyu
Issued Date
2022-09
DOI
10.1021/acs.chemmater.2c00846
URI
https://scholarworks.unist.ac.kr/handle/201301/65383
Fulltext
https://pubs.acs.org/doi/10.1021/acs.chemmater.2c00846
Citation
CHEMISTRY OF MATERIALS, v.34, no.18, pp.8091 - 8468
Abstract
Developing efficient immobilization techniques for organometallic complexes is essential for the fabrication of efficient single-atom catalysts (SACs) and the recycling of high-performance molecular catalysts. Here, we demonstrate facile methods for preparing SACs by incorporating an Ir complex into a zeolitic imidazolate framework (ZIF) support. The Ir(bis-carbene) complex was introduced at different stages of the ZIF-7-III synthesis, resulting in different immobilization efficiencies, particle shapes, and catalytic activities. The possible local structures were proposed by density functional theory modeling and compared with the X-ray absorption spectroscopy results, which established that the Ir(bis-carbene) moiety coordinates with the defective -N site of the benzimidazolate ligand. The prepared catalysts exhibited unprecedented turnover numbers (> 30,000) for glycerol dehydrogenation and CO2 hydrogenation. Hot filtration and recycling tests confirmed the heterogeneity and stability of the catalyst under harsh reaction conditions. The findings of this study will promote the heterogenization of various organometallic complexes for diverse catalytic reactions.
Publisher
AMER CHEMICAL SOC
ISSN
0897-4756
Keyword
METAL-ORGANIC FRAMEWORKSLACTIC-ACIDCONVERSIONCO2HYDROGENATIONENCAPSULATIONNANOSHEETSSTABILITYCOMPLEXESEXCHANGE

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