A sustainable protocol for the facile synthesis of zinc-glutamate MOF: an efficient catalyst for room temperature CO2 fixation reactions under wet conditions

A water stable zinc-MOF (ZnGlu) catalyst was facilely prepared from the proteinogenic amino acid, l-glutamic acid at room temperature in aqueous medium. CO2 fixations were promoted by the ZnGlu catalyst's inherently coordinated water and externally added water in yielding cyclic carbonate and c...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2016-01, Vol.52 (2), p.280-283
Hauptverfasser: Kathalikkattil, Amal Cherian, Roshan, Roshith, Tharun, Jose, Babu, Robin, Jeong, Gyeong-Seon, Kim, Dong-Woo, Cho, Sung June, Park, Dae-Won
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container_end_page 283
container_issue 2
container_start_page 280
container_title Chemical communications (Cambridge, England)
container_volume 52
creator Kathalikkattil, Amal Cherian
Roshan, Roshith
Tharun, Jose
Babu, Robin
Jeong, Gyeong-Seon
Kim, Dong-Woo
Cho, Sung June
Park, Dae-Won
description A water stable zinc-MOF (ZnGlu) catalyst was facilely prepared from the proteinogenic amino acid, l-glutamic acid at room temperature in aqueous medium. CO2 fixations were promoted by the ZnGlu catalyst's inherently coordinated water and externally added water in yielding cyclic carbonate and cyclic urethane at room temperature. This eliminates the need for catalyst activation, making ZnGlu a ready-to-use catalyst. The enhanced CO2 cycloaddition with added water hints at the application of ZnGlu in wet flue gas conversions. This is the first reported attempt for the use of an MOF in the cycloaddition of aziridine and CO2.
doi_str_mv 10.1039/c5cc07781h
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title A sustainable protocol for the facile synthesis of zinc-glutamate MOF: an efficient catalyst for room temperature CO2 fixation reactions under wet conditions
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