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首页> 外文期刊>Composite interfaces >Molecular dynamics simulations on the interaction between microsphere and water in nanosilica/crosslinked polyacrylamide microsphere aqueous solution with a core-shell structure and its swelling behavior
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Molecular dynamics simulations on the interaction between microsphere and water in nanosilica/crosslinked polyacrylamide microsphere aqueous solution with a core-shell structure and its swelling behavior

机译:纳米型/交联聚丙烯酰胺微球水溶液与核心壳结构及其肿胀行为的分子动力学模拟

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摘要

In this study, nanosilica/crosslinked Polyacrylamide (PAM) microsphere with a core-shell structure is designed to make a functional material, where nanosilica provides the rigidity, stiffness and strength, the crosslinked PAM provides the flexibility and elasticity. The structure mentioned above make the resulting microspheres to be able to enter, expand, shut off and be removed from deep layers of oilfields. A methodology to create the nanosilica/crosslinked PAM microsphere with a core-shell structure has been developed, and molecular dynamic (MD) simulations are applied to successfully study the interaction between the microsphere and water in aqueous solution of nanosilica/crosslinked PAM microsphere and its swelling behavior. Results including the interaction energies (E-inter) between nanosilica and crosslinked PAM, E-inter between the microsphere and water molecules, radius of gyrations (R-g) of the microsphere, the radial distribution functions of microsphere-water pairs, the mean square displacements and the diffusion coefficients (D) of water are calculated and analyzed in detail. The experimental results of particle diameter tested from dynamic light scattering have been used to verify the simulation results of swelling behavior.
机译:在这项研究中,纳米二氧化硅/交联的聚丙烯酰胺(PAM)的微球具有核 - 壳结构的目的是使功能性材料,其中纳米二氧化硅提供了刚性,硬度和强度,交联的PAM提供了柔韧性和弹性。上述结构使所得到的微球,以便能够进入,扩大,切断并从油田的深层除去。以产生具有核 - 壳结构的纳米二氧化硅/交联的PAM微球甲方法已被开发出来,和分子动力学(MD)模拟施加到成功研究纳米二氧化硅/交联的PAM微球和其水溶液的微球和水之间的相互作用溶胀行为。结果,包括纳米二氧化硅和交联的PAM之间的相互作用能量(E-间)的微球的微球和水分子,回转半径(Rg)之间,微球的水对径向分布函数,均方位移之间,E-间和水的扩散系数(d)被计算并进行了详细分析。从动态光散射测试的粒径的实验结果已被用来验证溶胀行为的仿真结果。

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