The use of degrading enzymes in polymer formulation is a very attractive strategy to manage the end-of-life of plastics. However, high temperatures cause the denaturation of enzymes and the loss of their catalytic activity; therefore, protection strategies are necessary. Once protected, the enzyme needs to be released in appropriate media to exert its catalytic activity. A successful protection strategy involves the use of layered double hydroxides: cutinase, selected as a highly degrading polyester hydrolytic enzyme, is thermally protected by immobilization in Mg/Al layered double hydroxide structures. Different triggering media are here evaluated in order to find the best releasing conditions of cutinase from LDH. In detail, phosphate and...
Successfully interfacing enzymes and biomachinery with polymers affords on-demand modification and/o...
This thesis is focused on the immobilization of a selected biomolecule, Horseradish peroxidase enzym...
In this study, we have developed strategies to immobilize enzymes into various polymer and coatings....
The use of degrading enzymes in polymer formulation is a very attractive strategy to manage the end-...
The use of polymer-degrading enzymes in polymer formulation is a very attractive strategy for the li...
Packaging accounts for more than 40% of all plastics produced every year and plastic accumulation in...
The use of polymer-degrading enzymes is an attractive and effective method for the management of pla...
In recent years, a number of microbial enzymes capable of degrading plastics have been identified. B...
Thermally protected enzyme for degradable on-demand polymers Angela Romano, Antonella Rosato, Grazi...
The constant increase of the plastic production over the world has become a serious problem, since m...
The enzymatic degradation of polyethylene terephthalate (PET) occurs at mild reaction conditions and...
Lipases from Candida antarctica (isoform B) and Rhizomucor miehei (CALB and RML) have been immobiliz...
The performance, biodegradability, and recyclability of polymers can be tuned during synthesis by ad...
Commercial hydrolytic enzymes belonging to different subclasses (several lipases, proteinase k, cuti...
The constant increase of the plastic production over the world has become a serious problem, since m...
Successfully interfacing enzymes and biomachinery with polymers affords on-demand modification and/o...
This thesis is focused on the immobilization of a selected biomolecule, Horseradish peroxidase enzym...
In this study, we have developed strategies to immobilize enzymes into various polymer and coatings....
The use of degrading enzymes in polymer formulation is a very attractive strategy to manage the end-...
The use of polymer-degrading enzymes in polymer formulation is a very attractive strategy for the li...
Packaging accounts for more than 40% of all plastics produced every year and plastic accumulation in...
The use of polymer-degrading enzymes is an attractive and effective method for the management of pla...
In recent years, a number of microbial enzymes capable of degrading plastics have been identified. B...
Thermally protected enzyme for degradable on-demand polymers Angela Romano, Antonella Rosato, Grazi...
The constant increase of the plastic production over the world has become a serious problem, since m...
The enzymatic degradation of polyethylene terephthalate (PET) occurs at mild reaction conditions and...
Lipases from Candida antarctica (isoform B) and Rhizomucor miehei (CALB and RML) have been immobiliz...
The performance, biodegradability, and recyclability of polymers can be tuned during synthesis by ad...
Commercial hydrolytic enzymes belonging to different subclasses (several lipases, proteinase k, cuti...
The constant increase of the plastic production over the world has become a serious problem, since m...
Successfully interfacing enzymes and biomachinery with polymers affords on-demand modification and/o...
This thesis is focused on the immobilization of a selected biomolecule, Horseradish peroxidase enzym...
In this study, we have developed strategies to immobilize enzymes into various polymer and coatings....