Division of Physical Chemistry, Department of Chemistry, Lund University, SE-22100 Lund, Sweden.
Large Scale Structures Group, Institut Laue-Langevin, Grenoble, 38042, France.
Soft Matter. 2018 May 23;14(20):4150-4159. doi: 10.1039/c8sm00390d.
The swelling of ionic microgel particles is investigated at a wide range of concentrations using a combination of light, X-ray and neutron scattering techniques. We employ a zero-average contrast approach for small-angle neutron scattering experiments, which enables a direct determination of the form factor at high concentrations. The observed particle size initially decreases strongly with the particle concentration in the dilute regime but approaches a constant value at intermediate concentrations. This is followed by a further deswelling at high concentrations above particle overlap. Theory and experiments point at a pivotal contribution of dangling polymer ends to the strong variation in size of ionic microgels, which presents itself mainly through the hydrodynamics properties of the system.
采用光散射、X 射线散射和小角中子散射技术相结合的方法,在很宽的浓度范围内研究了离子微凝胶颗粒的溶胀行为。我们采用零平均对比的方法进行小角中子散射实验,从而可以在高浓度下直接确定形状因子。在稀溶液区,观察到的粒子尺寸最初随粒子浓度强烈下降,但在中间浓度下趋于一个常数。在高于粒子重叠的高浓度下,随后会进一步溶胀。理论和实验都表明,悬垂聚合物末端对离子微凝胶尺寸的强烈变化有重要贡献,这主要通过体系的流体力学性质表现出来。