Commercial-scale biofuel production requires a deep understanding of the structure and dynamics of its principal target: cellulose. However, an accurate description and modeling of this carbohydrate structure at the mesoscale remains elusive, particularly because of its overwhelming length scale and configurational complexity. We have derived a set of MARTINI coarse-grained force field parameters for the simulation of crystalline cellulose fibers. The model is adapted to reproduce different physicochemical and mechanical properties of native cellulose I beta. The model is able not only to handle a transition from cellulose I beta to another cellulose allomorph, cellulose IIII, but also to capture the physical response to temperature and mec...
Understanding the microscopic mechanisms of regeneration of cellulose is prerequisite for engineerin...
The structural changes of cellulose in non-solvent liquid media can provide insights into the high-v...
Cellulose, the major component of plant matter, has a complex hierarchical structure that extends fr...
Commercial-scale biofuel production requires a deep understanding of the structure and dynamics of i...
High resolution data from all-atom molecular simulations is used to parameterize a Martini 3 coarse-...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
A fundamental understanding of the intermolecular forces that bind polysaccharide chains together in...
Cellulosic biomass has the potential to be used as a sustainable feedstock for the production of liq...
We have developed a coarse-grained molecular model to investigate carbohydrates-solvent interactions...
Nature has created efficient strategies to make materials with hierarchical internal structure that ...
The quintessential form of cellulose in wood consists of microfibrils that have high aspect ratio cr...
Understanding biomass structure and dynamics on multiple time and length scales is important for the...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The conversion of cellulosic biomass into biofuels requires degradation of the biomass into fermenta...
Cellulose constitutes the most abundant renewable polymeric resource available today. It considered ...
Understanding the microscopic mechanisms of regeneration of cellulose is prerequisite for engineerin...
The structural changes of cellulose in non-solvent liquid media can provide insights into the high-v...
Cellulose, the major component of plant matter, has a complex hierarchical structure that extends fr...
Commercial-scale biofuel production requires a deep understanding of the structure and dynamics of i...
High resolution data from all-atom molecular simulations is used to parameterize a Martini 3 coarse-...
Cellulose being the most widely available biopolymer on Earth is attracting significant interest fro...
A fundamental understanding of the intermolecular forces that bind polysaccharide chains together in...
Cellulosic biomass has the potential to be used as a sustainable feedstock for the production of liq...
We have developed a coarse-grained molecular model to investigate carbohydrates-solvent interactions...
Nature has created efficient strategies to make materials with hierarchical internal structure that ...
The quintessential form of cellulose in wood consists of microfibrils that have high aspect ratio cr...
Understanding biomass structure and dynamics on multiple time and length scales is important for the...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The conversion of cellulosic biomass into biofuels requires degradation of the biomass into fermenta...
Cellulose constitutes the most abundant renewable polymeric resource available today. It considered ...
Understanding the microscopic mechanisms of regeneration of cellulose is prerequisite for engineerin...
The structural changes of cellulose in non-solvent liquid media can provide insights into the high-v...
Cellulose, the major component of plant matter, has a complex hierarchical structure that extends fr...