Elsner Nils, Kozlovskaya Veronika, Sukhishvili Svetlana A, Fery Andreas
School of Chemistry, University of Bristol, Bristol, UK.
Department of Chemistry and Chemical Biology, Stevens Institute of Technology, Hoboken, NJ, USA.
Soft Matter. 2006 Oct 17;2(11):966-972. doi: 10.1039/b608317j.
We report here the first AFM single capsule mechanical measurements on hydrogen-bonded polymeric multilayer microcapsules made of poly(vinylpyrrolidone)/poly(methacrylic acid) (PVPON/PMAA) and of poly(-vinylpyrrolidone-co-NH-20)/poly(methacrylic acid) (PVPON-co-NH-20/PMAA), as well as of capsules derived from these systems chemical crosslinking. The stiffness of the non-crosslinked hydrogen-bonded capsules was found to be proportional to the square of the wall thickness which is in agreement with previous observations on other multilayer capsules and continuum mechanical theory. The found elastic modulus of 610 MPa for low pH (= 2) is typical for a highly stable, glass-like structure similar to electrostatically bound multilayers. At pH > 6, (PMAA) capsules obtained through chemical crosslinking of hydrogen-bonded (PVPON/PMAA) multilayers, or crosslinked (PVPON-co-NH-20/PMAA) capsules showed a sharp hundreds-fold stiffness decrease to ∼1 mN/m which was orders of magnitude lower than those reported earlier for polymeric multilayer systems. pH-Triggered softening was reversible and highly reproducible. Softening of both (PMAA) and (PVPON-co-NH-20/PMAA) crosslinked capsules resulted from increased PMAA ionization, and additional dissociation of intermolecular hydrogen bonds occurred in the case of (PVPON-co-NH-20/PMAA) crosslinked system.
我们在此报告了首次使用原子力显微镜(AFM)对由聚乙烯吡咯烷酮/聚甲基丙烯酸(PVPON/PMAA)、聚乙烯吡咯烷酮-co-NH-20/聚甲基丙烯酸(PVPON-co-NH-20/PMAA)制成的氢键聚合物多层微胶囊,以及由这些体系化学交联得到的胶囊进行的单胶囊力学测量。发现非交联氢键胶囊的刚度与壁厚的平方成正比,这与之前对其他多层胶囊的观察结果以及连续介质力学理论一致。在低pH值(=2)时测得的610MPa弹性模量对于高度稳定的玻璃状结构来说是典型的,类似于静电结合的多层结构。在pH>6时,通过氢键结合的(PVPON/PMAA)多层结构化学交联得到的(PMAA)胶囊,或交联的(PVPON-co-NH-20/PMAA)胶囊的刚度急剧下降数百倍,降至约1mN/m,这比之前报道的聚合物多层体系低几个数量级。pH触发的软化是可逆且高度可重复的。(PMAA)和(PVPON-co-NH-20/PMAA)交联胶囊的软化是由于PMAA离子化增加导致的,在(PVPON-co-NH-20/PMAA)交联体系中还发生了分子间氢键的额外解离。