Cellulose is the most abundant organic compound in the biosphere. In nature, crystalline cellulose is hydrolysed by specific enzymes called cellulases. Understanding the physico‐chemical nature of these enzymatic processes will be essential for developing new energy saving and non polluting methods for cellulose degradation and modification
Cellulose-to-glucose conversion costs comprise one of the largest expenses in the production of lign...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...
Cellulose is the most abundant organic compound in the biosphere. In nature, crystalline cellulose i...
A surface model of crystalline cellulose was constructed based on the crystal structure of the sea a...
A surface model of crystalline cellulose was constructed based on the crystal structure of the sea a...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
Cellulose is an important industrial raw material and a source of renewable energy. The crystalline ...
Cellulose is an important industrial raw material and a source of renewable energy. The crystalline ...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
It was observed in experiments that the catalytic domain (CD) of Trichoderma reesei Cel7A (TrCel7A) ...
Cellulose is the most abundant polysaccharide on earth, found in nature almost exclusively in plant ...
Cellulose is the most abundant polysaccharide on earth, found in nature almost exclusively in plant ...
Cellulose-to-glucose conversion costs comprise one of the largest expenses in the production of lign...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...
Cellulose is the most abundant organic compound in the biosphere. In nature, crystalline cellulose i...
A surface model of crystalline cellulose was constructed based on the crystal structure of the sea a...
A surface model of crystalline cellulose was constructed based on the crystal structure of the sea a...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
Cellulose is an important industrial raw material and a source of renewable energy. The crystalline ...
Cellulose is an important industrial raw material and a source of renewable energy. The crystalline ...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
It was observed in experiments that the catalytic domain (CD) of Trichoderma reesei Cel7A (TrCel7A) ...
Cellulose is the most abundant polysaccharide on earth, found in nature almost exclusively in plant ...
Cellulose is the most abundant polysaccharide on earth, found in nature almost exclusively in plant ...
Cellulose-to-glucose conversion costs comprise one of the largest expenses in the production of lign...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...
Trichoderma reesei cellobiohydrolase I (TrCel7A) is a molecular motor that directly hydrolyzes cryst...