TY - JOUR
T1 - Molecular simulations of the effects of substitutions on the dissolution properties of amorphous cellulose acetate
AU - Shi, Ying Xian
AU - Li, Shen Hui
AU - Zhao, Zhi Ping
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/9/1
Y1 - 2022/9/1
N2 - The dissolution behavior of cellulose acetate (CA) is an extremely important property in its extensive applications and preparation of derivatives. In this paper, we proposed a molecular model building strategy to construct amorphous CA with various substituent distributions (different degrees of substitution and substitution positions). A protocol combing molecular dynamics simulation and density functional theory (DFT) was applied to systematically investigate the dissolution behavior of CAs, and the structural properties of CAs. The reduced cohesive energy and polarity of CAs caused by the increase in substituents would enhance its solubility. The interaction of solvent molecules and CAs and the diffusion of solvent molecules in CAs have a synergistic effect on the dissolution of CAs. The diffusion coefficient is the primary factor affecting the solubility. Moreover, substituents at different positions of the anhydroglucose units along the CAs chains would produce different steric hindrance effects, which in turn affect the dissolution behavior.
AB - The dissolution behavior of cellulose acetate (CA) is an extremely important property in its extensive applications and preparation of derivatives. In this paper, we proposed a molecular model building strategy to construct amorphous CA with various substituent distributions (different degrees of substitution and substitution positions). A protocol combing molecular dynamics simulation and density functional theory (DFT) was applied to systematically investigate the dissolution behavior of CAs, and the structural properties of CAs. The reduced cohesive energy and polarity of CAs caused by the increase in substituents would enhance its solubility. The interaction of solvent molecules and CAs and the diffusion of solvent molecules in CAs have a synergistic effect on the dissolution of CAs. The diffusion coefficient is the primary factor affecting the solubility. Moreover, substituents at different positions of the anhydroglucose units along the CAs chains would produce different steric hindrance effects, which in turn affect the dissolution behavior.
KW - Acetic acid (PubChem CID: 176)
KW - Acetone (PubChem CID: 180)
KW - Acetylcellulose (PubChem CID: 139600838)
KW - Cellobiose (PubChem CID: 10712)
KW - Cellulose acetate
KW - DFT
KW - Dissolution behavior
KW - Molecular dynamics simulation
KW - Substituent distributions
KW - Water (PubChem CID: 962)
UR - http://www.scopus.com/inward/record.url?scp=85130175710&partnerID=8YFLogxK
U2 - 10.1016/j.carbpol.2022.119610
DO - 10.1016/j.carbpol.2022.119610
M3 - Article
C2 - 35698409
AN - SCOPUS:85130175710
SN - 0144-8617
VL - 291
JO - Carbohydrate Polymers
JF - Carbohydrate Polymers
M1 - 119610
ER -