Confined space of a nickel-triazole metal–organic framework responsible for high product selectivity and enantiospecific yield of lactic acid converted from sugar in a water-based system

Author:

Adpakpang Kanyaporn1ORCID,Ponchai Panyapat1ORCID,Pukdeejorhor Ladawan1ORCID,Faungnawakij Kajornsak2ORCID,Bureekaew Sareeya1ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering, School of Energy Science and Engineering, Vidyasirimedhi Institute of Science and Technology , 555 Payupnai , Wangchan, Rayong 21210, Thailand

2. National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA) , 111 Thailand Science Park, Pahonyothin Rd. , Klong Laung, Pathumthani 12120, Thailand

Abstract

Abstract Enantioselective production of lactic acid from xylose sugar in the constrained pore space of the Ni-triazole metal-organic framework (MOF) is demonstrated. A robust hydrophilic structure with a confined nano-pocket is constructed from the [Ni3(µ3-OH)(Tz)3(OH)2(H2O)4]n secondary building unit (SBU). At elevated temperature, the de-coordination of water and hydroxide species on the Ni node can generate accessible an open metal site (OMS) possessing Lewis acidicity, acting as catalytic center for the catalysis of xylose to lactic acid. Density functional theory (DFT) calculations suggests that an enantiospecific yield of lactic acid is realizable by a preferential interaction between any pair of SBUs and the interlocked trans-pyruvaldehyde intermediate. This work highlights the unique spatial and chemical environment of MOFs as an advantageous platform for specific processes in catalysis.

Funder

Vidyasirimedhi Institute of Science and Technology

Toray Science Foundation

National Research Council of Thailand

Publisher

Oxford University Press (OUP)

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