Immobilization of bio-catalysts in solid porous materials has attracted much attention in the last few decades due to its vast application potential in ex vivo catalysis. Despite the high efficiency and selectivity of enzymatic catalytic processes, enzymes may suffer from denaturation under industrial production conditions, which, in turn, diminish their catalytic performances and long-term recyclability. Metal-organic frameworks (MOFs), as a growing type of hybrid materials, have been identified as promising platforms for enzyme immobilization owing to their enormous structural and functional tunability, and extraordinary porosity. This review mainly focuses on the applications of enzyme@MOFs hybrid materials in catalysis, sensing, and det...
Metal-organic frameworks (MOFs) have revolutionized the potential applications of nanoporous materia...
Enzyme immobilization in metal-organic frameworks (MOFs) as a promising strategy, is attracting the ...
In the drive toward green and sustainable methodologies for chemicals manufacturing, biocatalysts ar...
Due to their efficiency, selectivity, and environmental sustainability, there are significant opport...
Because of their efficiency, selectivity, and environmental sustainability, there are significant op...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
International audienceEnzyme immobilization is a widely reported method to favor the applicability o...
International audienceEnzyme immobilization is a widely reported method to favor the applicability o...
The industrial use of enzymes generally necessitates their immobilization onto solid supports. The w...
The industrial use of enzymes generally necessitates their immobilization onto solid supports. The w...
[Background] Very recently, metal‐organic framework (MOF) materials have been postulated as emerging...
Enzymatic catalysis is of great importance to the chemical industry. However, we are still scratchin...
Metal-organic frameworks (MOFs) have revolutionized the potential applications of nanoporous materia...
Enzyme immobilization in metal-organic frameworks (MOFs) as a promising strategy, is attracting the ...
In the drive toward green and sustainable methodologies for chemicals manufacturing, biocatalysts ar...
Due to their efficiency, selectivity, and environmental sustainability, there are significant opport...
Because of their efficiency, selectivity, and environmental sustainability, there are significant op...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
In the past few years, metal organic frameworks (MOFs) have drawn increasing research interest as bi...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
International audienceEnzyme immobilization is a widely reported method to favor the applicability o...
International audienceEnzyme immobilization is a widely reported method to favor the applicability o...
The industrial use of enzymes generally necessitates their immobilization onto solid supports. The w...
The industrial use of enzymes generally necessitates their immobilization onto solid supports. The w...
[Background] Very recently, metal‐organic framework (MOF) materials have been postulated as emerging...
Enzymatic catalysis is of great importance to the chemical industry. However, we are still scratchin...
Metal-organic frameworks (MOFs) have revolutionized the potential applications of nanoporous materia...
Enzyme immobilization in metal-organic frameworks (MOFs) as a promising strategy, is attracting the ...
In the drive toward green and sustainable methodologies for chemicals manufacturing, biocatalysts ar...