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1. Preferential interactions between lithium chloride and glucan chains in N,N-dimethylacetamide drive cellulose dissolution.

2. Degree of polymerization of glucan chains shapes the structure fluctuations and melting thermodynamics of a cellulose microfibril.

3. Entropy of cellulose dissolution in water and in the ionic liquid 1-butyl-3-methylimidazolim chloride.

4. Thermodynamics of cellulose solvation in water and the ionic liquid 1-butyl-3-methylimidazolim chloride.

5. On the molecular origins of biomass recalcitrance: the interaction network and solvation structures of cellulose microfibrils.

6. The Solvent Mediated Thermodynamics of Cellulose Deconstruction

7. Dissecting Force Interactions in Cellulose Deconstruction Reveals the Required Solvent Versatility for Overcoming Biomass Recalcitrance.

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