Department of Chemical and Environmental Engineering, Yale University, New Haven, CT 06511, USA.
Soft Matter. 2017 Apr 12;13(15):2733-2737. doi: 10.1039/c7sm00092h.
Microcapsules with high mechanical stability and elasticity are desirable in a variety of contexts. We report a single-step method to fabricate such microcapsules by microfluidic interfacial complexation between high stiffness cellulose nanofibrils (CNF) and an oil-soluble cationic random copolymer. Single-capsule compression measurements reveal an elastic modulus of 53 MPa for the CNF-based capsule shell with complete recovery of deformation from strains as large as 19%. We demonstrate the ability to manipulate the shell modulus by the use of polyacrylic acid (PAA) as a binder material, and observe a direct relationship between the shell modulus and the PAA concentration, with moduli as large as 0.5 GPa attained. These results demonstrate that CNF incorporation provides a facile route for producing strong yet flexible microcapsule shells.
在许多情况下,具有高机械稳定性和弹性的微胶囊是人们所期望的。我们报告了一种通过高刚性纤维素纳米纤维(CNF)和油溶性阳离子无规共聚物之间的微流控界面复合来制备这种微胶囊的单步方法。单个胶囊的压缩测量结果表明,基于 CNF 的胶囊壳的弹性模量为 53MPa,从高达 19%的应变完全恢复变形。我们通过使用聚丙烯酸(PAA)作为粘结材料来证明调节壳模量的能力,并观察到壳模量与 PAA 浓度之间存在直接关系,最大可达 0.5GPa 的模量。这些结果表明,CNF 的掺入为生产强韧且灵活的微胶囊壳提供了一种简单的途径。