Institute of Macromolecular Compounds, Russian Academy of Sciences, Bolshoj pr. 31 (V.O.), St. Petersburg 199004, Russia.
Phys Chem Chem Phys. 2021 Jan 6;23(1):457-469. doi: 10.1039/d0cp04556j.
We studied the structure of brushes consisting of branched oligolactide (OLA) chains grafted onto the surface of cellulose nanoparticles (CNPs) in polylactide (PLA) and compared the outcomes to the case of grafting linear OLA chains using atomistic molecular dynamics simulations. The systems were considered in a melt state. The branched model OLA chains comprised one branching point and three branches, while the linear OLA chains examined had a molecular weight similar to the branched chains. It was shown that free branches of the branched OLA chains tend to fold back toward the CNPs due to dipole-dipole interactions within the grafted layer, in contrast to the well-established behavior of the grafted uncharged branched chains. This result, however, is in qualitative agreement with the conformational behavior known for linear OLA chains. At the same time, no significant difference in the effectiveness of covering the filler surface with grafted branched or linear OLA chains was found. In terms of the expelling ability of the grafted chains and the interaction between PLA and CNP or OLA, the linear chains were broadly similar (sparse grafting) or better (intermediate or dense grafting) compared to the branched ones. Thus, the grafted lactide chains with a linear architecture, rather than their branched counterpart, may be preferable for the covalent modification of cellulose nanoparticles.
我们研究了接枝在纤维素纳米颗粒(CNP)表面的支化低聚丙交酯(OLA)链的刷状结构,并将其与使用原子分子动力学模拟接枝线性 OLA 链的情况进行了比较。这些体系被认为处于熔融状态。支化模型的 OLA 链包含一个支化点和三个支链,而所研究的线性 OLA 链的分子量与支化链相似。结果表明,由于接枝层内的偶极-偶极相互作用,支化 OLA 链的游离支链倾向于折回 CNP,这与接枝的不带电支化链的典型行为相反。然而,这一结果与已知的线性 OLA 链的构象行为定性一致。同时,接枝的支化或线性 OLA 链覆盖填充剂表面的有效性没有明显差异。就接枝链的排斥能力以及 PLA 与 CNP 或 OLA 之间的相互作用而言,与支化链相比,线性链在稀疏接枝或中等至密集接枝时表现出相似(稀疏接枝)或更好(中等或密集接枝)的性能。因此,对于纤维素纳米颗粒的共价修饰,具有线性结构的接枝丙交酯链而不是支化的丙交酯链可能更为可取。