Biomass recalcitrance, the resistance of cellulosic biomass to degradation, is due in part to the stability of the hydrogen bond network and stacking forces between the polysaccharide chains in cellulose microfibers. The fragment molecular orbital (FMO) method at the correlated Møller–Plesset second order perturbation level of theory was used on a model of the crystalline cellulose Iα core with a total of 144 glucose units. These computations show that the intersheet chain interactions are stronger than the intrasheet chain interactions for the crystalline structure, while they are more similar to each other for a relaxed structure. An FMO chain pair interaction energy decomposition analysis for both the crystal and relaxed structures revea...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Biomass recalcitrance, the resistance of cellulosic biomass to degradation, is due in part to the st...
The energies arising from the rotation of free hydroxyl groups in the central glucose residue of a c...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
A recent structure determination of native cellulose has shown that it is composed of two different ...
The contribution of hydrogen bonds and the London dispersion force in the cohesion of cellulose is d...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Biomass recalcitrance, the resistance of cellulosic biomass to degradation, is due in part to the st...
The energies arising from the rotation of free hydroxyl groups in the central glucose residue of a c...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
A recent structure determination of native cellulose has shown that it is composed of two different ...
The contribution of hydrogen bonds and the London dispersion force in the cohesion of cellulose is d...
AbstractA critical roadblock to the production of biofuels from lignocellulosic biomass is the effic...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...
Hydrogen bonds play critical roles in noncovalent directional interactions determining the crystal s...