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Cited 222 time in webofscience Cited 221 time in scopus
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Recent advances in enzyme immobilization techniques: Metal-organic frameworks as novel substrates

Authors
Mehta, JyotsanaBhardwaj, NehaBhardwaj, Sanjeev K.Kim, Ki-HyunDeep, Akash
Issue Date
Sep-2016
Publisher
Elsevier BV
Keywords
Metal organic frameworks; Enzymes; Biocatalytic supports; Immobilization; Diffusion; Encapsulation
Citation
Coordination Chemistry Reviews, v.322, pp 30 - 40
Pages
11
Indexed
SCI
SCIE
SCOPUS
Journal Title
Coordination Chemistry Reviews
Volume
322
Start Page
30
End Page
40
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/4963
DOI
10.1016/j.ccr.2016.05.007
ISSN
0010-8545
1873-3840
Abstract
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bioimmobilization support materials. The unique properties of MOFs, including tunable porosity, desirable functionality, extremely high surface area, and chemical/thermal stability, have motivated a considerable interest in exploiting them as a potential matrix for enzyme immobilization. Improvements in the biocatalyst efficiency, promising recyclability, enhanced accessibility to active sites, and a high loading capacity are the main features of the novel MOF-enzyme supports. This review aims to cover the recent progress in the application of MOFs as enzyme immobilization supports. We discuss different approaches used in the development of MOF-enzyme biocatalytic supports, such as surface adsorption, diffusion, and in-situ encapsulation. The trends in current developments and the significance of each strategy are critically reviewed in this paper.
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