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Updated: Jan 8, 2026

Development of Heterogeneous Enantioselective Catalysts using Chiral Metal-Organic Frameworks MOFs
Published on: January 17, 2020
Catálisis sinérgica eficiente de ozono y acetato de etilo mediada por sitios duales de Cu(I)/Cu(II)
Xinge Li1, Guanqing Song1, Xiao Wang2
1State Key Laboratory of High Performance Ceramics, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 585 Heshuo Road, Shanghai 201899, China; University of Chinese Academy of Sciences, 19 (A) Yuquan Road, Beijing 100049, China.
Abstract:
In chip manufacturing facilities, high concentrations of ethyl acetate (EA) coexist with low concentrations of ozone (O3), and achieving their simultaneous removal remains challenging. In this study, defect-engineered Cu-BTC MOF was employed for the room-temperature removal of EA and O3 via synergistic catalysis. The CB-50 sample, synthesized with 50 μL acetic acid, achieved 80 % EA removal efficiency and 77 % O3 removal efficiency, markedly higher than pristine Cu-BTC (60 % and 72 %). Meanwhile, EA mineralization reached 90.3 %, which is 1.3 times that of pristine Cu-BTC (69.6 %). XPS and in-situ DRIFTS analyses revealed that Cu(I) sites served as active sites for O3 activation to yield •OH and O22- species, whereas Cu(II)-OH groups acted as the adsorption sites for EA, facilitating its transformation into carboxylic intermediates. Using the same approach, defects were introduced into a series of representative MOFs, confirming the feasibility of regulating the content of low-valent metal sites via defect engineering. This dual-site mechanism facilitates the synergistic catalysis of EA and O3. It demonstrates a promising strategy with potential for application of MOFs materials in room-temperature catalytic treatment of mixed gaseous pollutants.
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