A fundamental understanding of the intermolecular forces that bind polysaccharide chains together in cellulose is crucial for designing efficient methods to overcome the recalcitrance of lignocellulosic biomass to hydrolysis. Because the characteristic time and length scales for the degradation of cellulose by enzymatic hydrolysis or chemical pretreatment span orders of magnitude, it is important to closely integrate the molecular models used at each scale so that, ultimately, one may switch seamlessly between quantum, atomistic, and coarse-grained descriptions of the system. As a step towards that goal, four multiscale coarse-grained models for polysaccharide chains in a cellulose-Iα microfiber are considered. Using the force matching met...
We present a procedure to obtain coarse-grained models for aqueous polysaccha- ride solutions that a...
We report on a new approach for deriving coarse-grained intermolecular forces that retains the frict...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
Commercial-scale biofuel production requires a deep understanding of the structure and dynamics of i...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
Cellulosic biomass has the potential to be used as a sustainable feedstock for the production of liq...
La compréhension de la relation structure-propriétés des parois des cellules végétales s'appuie de p...
High resolution data from all-atom molecular simulations is used to parameterize a Martini 3 coarse-...
Background Degradation of cellulose to glucose requires the cooperative action of three classes of e...
We have developed a coarse-grained molecular model to investigate carbohydrates-solvent interactions...
Understanding biomass structure and dynamics on multiple time and length scales is important for the...
Cellulose is the most common biopolymer and widely used in our daily life. Due to its unique propert...
A Modelling and Simulation Study to Understand the Enzymatic Conversion of Waste Cellulose into Biof...
The development of multiscale methods for computational simulation of biophysical systems represents...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
We present a procedure to obtain coarse-grained models for aqueous polysaccha- ride solutions that a...
We report on a new approach for deriving coarse-grained intermolecular forces that retains the frict...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
Commercial-scale biofuel production requires a deep understanding of the structure and dynamics of i...
Computational modeling of biological systems is challenging because of the multitude of spatial and ...
Cellulosic biomass has the potential to be used as a sustainable feedstock for the production of liq...
La compréhension de la relation structure-propriétés des parois des cellules végétales s'appuie de p...
High resolution data from all-atom molecular simulations is used to parameterize a Martini 3 coarse-...
Background Degradation of cellulose to glucose requires the cooperative action of three classes of e...
We have developed a coarse-grained molecular model to investigate carbohydrates-solvent interactions...
Understanding biomass structure and dynamics on multiple time and length scales is important for the...
Cellulose is the most common biopolymer and widely used in our daily life. Due to its unique propert...
A Modelling and Simulation Study to Understand the Enzymatic Conversion of Waste Cellulose into Biof...
The development of multiscale methods for computational simulation of biophysical systems represents...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
We present a procedure to obtain coarse-grained models for aqueous polysaccha- ride solutions that a...
We report on a new approach for deriving coarse-grained intermolecular forces that retains the frict...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...