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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Determination of Internal Density Profiles of Smart Acrylamide-Based Microgels by Small-Angle Neutron Scattering: A Multishell Reverse Monte Carlo Approach
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Determination of Internal Density Profiles of Smart Acrylamide-Based Microgels by Small-Angle Neutron Scattering: A Multishell Reverse Monte Carlo Approach

机译:小角度中子散射测定智能丙烯酰胺基微凝块的内部密度谱:多机器反向蒙特卡罗方法

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The internal structure of nanometric microgels in water has been studied as a function of temperature, cross-linker content, and level of deuteration. Small-angle neutron scattering from poly(N-isopropylmethacrylamide) (volume phase transition approximate to 44 degrees C) microgel particles of radius well below 100 nm in D2O has been measured. The intensities have been analyzed with a combination of polymer chain scattering and form-free radial monomer volume fraction profiles defined over spherical shells, taking polydispersity in size of the particles determined by atomic force microscopy into account. A reverse Monte Carlo optimization using a limited number of parameters was developed to obtain smoothly decaying profiles in agreement with the experimentally scattered intensities. The results are compared to the swelling curve of microgel particles in the temperature range from 15 to 55 degrees C obtained from photon correlation spectroscopy (PCS). In addition to hydrodynamic radii measured by PCS, our analysis provides direct information about the internal water content and gradients, the strongly varying steepness of the density profile at the particle-water interface, the total spatial extension of the particles, and the visibility of chains. The model has also been applied to a variation of the cross-linker content, N,N'-methylenebisacrylamide, from 5 to 15 mol %, providing insight on the impact of chain architecture and cross-linking on water uptake and on the definition of the polymer-water interface. The model can easily be generalized to arbitrary monomer contents and types, in particular mixtures of hydrogenated and deuterated species, paving the way to detailed studies of monomer distributions inside more complex microgels, in particular core-shell particles.
机译:纳米微粒凝胶在水中的内部结构已经被研究作为温度的函数,交联剂含量,和氘化的水平。由聚小角度中子散射(N异丙基甲基丙烯)(体积相转变近似度到44度C)半径的微粒凝胶颗粒远低于在D 2 O 100纳米已经测量。强度进行了分析与聚合物链的散射和在球壳定义游离形式径向单体体积分数分布的组合,以多分散性在通过原子力显微镜测定考虑到颗粒的大小。使用的参数的有限数量的反向蒙特卡洛优化开发在与实验散射强度协议以获得平滑衰减曲线。结果进行比较,以在所述温度范围内为15〜55℃从光子相关光谱法(PCS)中得到的微凝胶粒子的溶胀曲线。除了通过PCS测量的流体动力学半径,我们的分析提供了关于内部水含量和梯度的直接信息,密度分布的在颗粒 - 水界面的强烈变化的陡度,颗粒的空间延伸总,和链的能见度。该模型也被施加到交联剂含量的变化中,N,N'-亚甲基,5至15摩尔%,在链结构和交联的水吸收和上定义的影响提供洞察聚合物 - 水界面。该模型可以容易地推广到任意的单体含量和类型,在氢化和氘化物种的特定混合物,铺平了道路单体分布的详细研究内部更复合微粒凝胶,尤其是核 - 壳颗粒。

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