Department of Chemistry, Syracuse Biomaterials Institute, Syracuse University, Syracuse, New York 13244, USA.
J Phys Chem B. 2010 Aug 19;114(32):10357-67. doi: 10.1021/jp103143x.
This work studies the phase separations between polymers and a small molecule in a common aqueous solution that do not have well-defined hydrophobic-hydrophilic separation. In addition to poly(acrylamide) (PAAm) and poly(vinyl alcohol) (PVA), poly(vinyl pyrrolidone) (PVP) also promotes liquid crystal (LC) droplet formation by disodium cromoglycate (5'DSCG) solvated in water. In the presence of these polymers, the concentration of 5'DSCG needed for forming LC droplets is substantially lower than that needed for forming an LC phase by 5'DSCG alone. To define the concentration ranges that 5'DSCG molecules form liquid crystals (either as droplets or as an isotropic-LC mixture), we constructed ternary phase diagrams for 5'DSCG, water, and a polymer - PVA, PVP, or PAAm. We discovered that PAAm with high molecular weight promotes LC droplet formation by 5'DSCG more effectively than PAAm with low molecular weight. At the same weight percentage, long-chain PAAm can cause 5'DSCG to form LC droplets in water, whereas short-chain PAAm does not. Poly(vinyl pyrrolidone) (PVP), which has functional groups that are more dissimilar to 5'DSCG than PVA and PAAm, promotes LC droplet formation by 5'DSCG more effectively than either of the other two polymers. Additionally, small angle neutron scattering data revealed that the assembly structure of 5'DSCG promoted by the presence of PVA is similar to the thread structure formed by 5'DSCG alone. Together, these results reveal how noncovalent polymerization can be promoted by mixing thermodynamically incompatible molecules and elucidate the basic knowledge of nonamphiphilic colloidal science.
这项工作研究了在没有明确的疏水-亲水分离的常见水溶液中聚合物和小分子之间的相分离。除了聚丙烯酰胺(PAAm)和聚乙烯醇(PVA)外,聚(N-乙烯基吡咯烷酮)(PVP)也能促进二钠顺式克罗莫林(5'DSCG)在水中溶解形成液晶(LC)液滴。在这些聚合物存在的情况下,形成 LC 液滴所需的 5'DSCG 浓度远低于单独形成 LC 相所需的浓度。为了确定 5'DSCG 分子形成液晶(无论是作为液滴还是各向同性-LC 混合物)的浓度范围,我们构建了 5'DSCG、水和聚合物 - PVA、PVP 或 PAAm 的三元相图。我们发现,高分子量的 PAAm 比低分子量的 PAAm 更有效地促进 5'DSCG 形成 LC 液滴。在相同的重量百分比下,长链 PAAm 可以使 5'DSCG 在水中形成 LC 液滴,而短链 PAAm 则不能。与 PVA 和 PAAm 相比,具有更多不同官能团的聚(N-乙烯基吡咯烷酮)(PVP)更有效地促进了 5'DSCG 形成 LC 液滴。此外,小角中子散射数据表明,在 PVA 存在下促进的 5'DSCG 的组装结构与单独的 5'DSCG 形成的线结构相似。总之,这些结果揭示了非共价聚合如何通过混合热力学上不相容的分子来促进,阐明了非两亲胶体科学的基础知识。