The molecular understanding of the chemistry of 1,4-β-glucans is essential for designing new approaches to the conversion of cellulose into platform chemicals and biofuels. In this endeavor, much attention has been paid to the role of hydrogen bonding occurring in the cellulose structure. So far, however, there has been little discussion about the implications of the electronic nature of the 1,4-β-glycosidic bond and its chemical environment for the activation of 1,4-β-glucans toward acid-catalyzed hydrolysis. This report sheds light on these central issues and addresses their influence on the acid hydrolysis of cellobiose and, by analogy, cellulose. The electronic structure of cellobiose was explored by DFT at the BB1 K/6-31++G(d,p) level....
This article reports a combined quantum mechanics/molecular mechanics (QM/MM) investigation on the a...
Based on density-functional theory calculations, we discuss three forms of cellulose IIII that are c...
© 2017, The Author(s). The doublet C4 peaks at ~ 85 and ~ 89 ppm in solid-state 13C NMR spectra of n...
We explore the influence of two solvents, namely water and the ionic liquid 1-ethyl-3-methylimidazol...
Glycosylation of cellobiose hydrolase I (CBHI), is a key step in the processing and degradation of c...
The energies arising from the rotation of free hydroxyl groups in the central glucose residue of a c...
A combination of vibrational spectroscopy conducted under molecular beam conditions and quantum chem...
Glycosylation of cellobiose hydrolase I (CBHI), is a key step in the processing and degradation of c...
We explore the influence of two solvents, namely water and the ionic liquid 1-ethyl-3-methylimidazol...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Carbon catalysts having weakly acidic groups are uniquely active for hydrolysis of cellulose to prod...
Currently, the main problems in cellulose conversion to glucose are the low enzymatic hydrolysis eff...
Currently, the main problems in cellulose conversion to glucose are the low enzymatic hydrolysis eff...
This article reports a combined quantum mechanics/molecular mechanics (QM/MM) investigation on the a...
Based on density-functional theory calculations, we discuss three forms of cellulose IIII that are c...
© 2017, The Author(s). The doublet C4 peaks at ~ 85 and ~ 89 ppm in solid-state 13C NMR spectra of n...
We explore the influence of two solvents, namely water and the ionic liquid 1-ethyl-3-methylimidazol...
Glycosylation of cellobiose hydrolase I (CBHI), is a key step in the processing and degradation of c...
The energies arising from the rotation of free hydroxyl groups in the central glucose residue of a c...
A combination of vibrational spectroscopy conducted under molecular beam conditions and quantum chem...
Glycosylation of cellobiose hydrolase I (CBHI), is a key step in the processing and degradation of c...
We explore the influence of two solvents, namely water and the ionic liquid 1-ethyl-3-methylimidazol...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Understanding interactions of metal ions with cellulose is an important step in the development of e...
Carbon catalysts having weakly acidic groups are uniquely active for hydrolysis of cellulose to prod...
Currently, the main problems in cellulose conversion to glucose are the low enzymatic hydrolysis eff...
Currently, the main problems in cellulose conversion to glucose are the low enzymatic hydrolysis eff...
This article reports a combined quantum mechanics/molecular mechanics (QM/MM) investigation on the a...
Based on density-functional theory calculations, we discuss three forms of cellulose IIII that are c...
© 2017, The Author(s). The doublet C4 peaks at ~ 85 and ~ 89 ppm in solid-state 13C NMR spectra of n...