As concerns increase regarding sustainable industries and environmental pollutions caused by the accumulation of non-degradable plastic wastes, bio-based polymers, particularly biodegradable plastics, have attracted considerable attention as potential candidates for solving these problems by substituting petroleum-based plastics. Among these candidates, polyhydroxyalkanoates (PHAs), natural polyesters that are synthesized and accumulated in a range of microorganisms, are considered as promising biopolymers since they have biocompatibility, biodegradability, and material properties similar to those of commodity plastics. Accordingly, substantial efforts have been made to gain a better understanding of mechanisms related to the biosynthesis a...
The industrial implementation of cost- and eco-efficient production of bio-based polymeric materials...
Aromatic polyesters are widely used plastics currently produced from petroleum. Here we engineer Esc...
Currently, we are witnessing highly dynamic research efforts related to the exciting field of novel ...
Plastics we use everyday are mostly synthetic polymers derived from fossil resources, and their accu...
Microorganisms produce diverse polymers for various purposes such as storing genetic information, en...
Due to our increasing concerns on environmental problems and limited fossil resources, biobased prod...
137-147Poly(3-hydroxyalkanoates) (PHAs) have been drawing much attention as biodegradable substitute...
Medium-chain-length polyhydroxyalkanoates (mcl-PHAs) are bacterial polyesters which are produced in ...
Polyhydroxyalkanoates (PHAs) are biodegradable and biocompatible polyesters that can potentially rep...
Abstract Due to the increasing environmental pollution of un-degradable plastics and the consumption...
Polyhydroxyalkanoates (PHAs) are a family of biodegradable intracellular polyesters that a number of...
Current worldwide threats related to global warming, climate change, and depletion of limited fossil...
An important field in sustainable industrial chemistry is the development of new applications for fa...
Petrochemical-derived plastics have become a source of pollution for decades, and finding alternativ...
Many bacteria are able to synthesize polyhydroxyalkanoates, abbreviated as PHA, as carbon and energy...
The industrial implementation of cost- and eco-efficient production of bio-based polymeric materials...
Aromatic polyesters are widely used plastics currently produced from petroleum. Here we engineer Esc...
Currently, we are witnessing highly dynamic research efforts related to the exciting field of novel ...
Plastics we use everyday are mostly synthetic polymers derived from fossil resources, and their accu...
Microorganisms produce diverse polymers for various purposes such as storing genetic information, en...
Due to our increasing concerns on environmental problems and limited fossil resources, biobased prod...
137-147Poly(3-hydroxyalkanoates) (PHAs) have been drawing much attention as biodegradable substitute...
Medium-chain-length polyhydroxyalkanoates (mcl-PHAs) are bacterial polyesters which are produced in ...
Polyhydroxyalkanoates (PHAs) are biodegradable and biocompatible polyesters that can potentially rep...
Abstract Due to the increasing environmental pollution of un-degradable plastics and the consumption...
Polyhydroxyalkanoates (PHAs) are a family of biodegradable intracellular polyesters that a number of...
Current worldwide threats related to global warming, climate change, and depletion of limited fossil...
An important field in sustainable industrial chemistry is the development of new applications for fa...
Petrochemical-derived plastics have become a source of pollution for decades, and finding alternativ...
Many bacteria are able to synthesize polyhydroxyalkanoates, abbreviated as PHA, as carbon and energy...
The industrial implementation of cost- and eco-efficient production of bio-based polymeric materials...
Aromatic polyesters are widely used plastics currently produced from petroleum. Here we engineer Esc...
Currently, we are witnessing highly dynamic research efforts related to the exciting field of novel ...