Zhou Shuiqin, Xu Chang, Wang Jun, Golas Patricia, Batteas James, Kreeger Lowell
Department of Chemistry, College of Staten Island, The City University of New York, 2800 Victory Boulevard, 10314, USA.
Langmuir. 2004 Sep 28;20(20):8482-9. doi: 10.1021/la049142n.
Novel cationic hydroxyethyl cellulose (HEC) polymers with different molecular weights (1.1 x 10(5) to 1.7 x 10(6) g/mol) and ethylene oxide (EO) side chain lengths (1.5-2.9 EO units) were mixed with sodium dodecyl sulfate (SDS) in aqueous solutions. The phase diagrams of cationic HEC-SDS complexes were determined in the dilute polymer concentration regime (< 0.5 wt %) with gradual addition of SDS molecules. The viscosity and structures of the complexes during the phase evolution were studied using rheometry and dynamic light scattering. The gradual addition of SDS first induced interchain associations with the bound SDS aggregates serving as cross-linkers to form an open network structure, producing a very broad size distribution and high viscosities of the complex solutions, and then condensed the network and induced a structure reorganization, resulting in globular aggregates with narrow size distributions. The growth of these globular aggregates in size eventually led to macroscopic sedimentation near charge neutralization. Further addition of SDS randomly broke the sedimentary aggregates into small particles and SDS micelles with low solution viscosities. The effects of molecular weight and EO side chain length of polymers on the phase boundary, viscosity, and structure of cationic HEC-SDS complexes were discussed.
将具有不同分子量(1.1×10⁵至1.7×10⁶ g/mol)和环氧乙烷(EO)侧链长度(1.5 - 2.9个EO单元)的新型阳离子羟乙基纤维素(HEC)聚合物与十二烷基硫酸钠(SDS)在水溶液中混合。在稀聚合物浓度范围(<0.5 wt%)内,随着SDS分子的逐渐加入,测定了阳离子HEC - SDS复合物的相图。使用流变学和动态光散射研究了相演变过程中复合物的粘度和结构。SDS的逐渐加入首先诱导链间缔合,结合的SDS聚集体作为交联剂形成开放网络结构,产生非常宽的尺寸分布和复合物溶液的高粘度,然后使网络凝聚并诱导结构重组,导致形成尺寸分布窄的球状聚集体。这些球状聚集体尺寸的增长最终导致在电荷中和附近发生宏观沉降。进一步加入SDS会随机地将沉积聚集体分解成小颗粒和具有低溶液粘度的SDS胶束。讨论了聚合物的分子量和EO侧链长度对阳离子HEC - SDS复合物的相边界、粘度和结构的影响。