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Diffusion of rod-like nanoparticles in non-adhesive and adhesive porous polymeric gels

机译:棒状纳米颗粒在非粘性和粘性多孔聚合物凝胶中的扩散

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摘要

It is known that rod-like nanoparticles (NPs) can achieve higher diffusivity than their spherical counterparts in biological porous media such as mucus and tumor interstitial matrix, but the underlying mechanisms still remain elusive. Here, we present a joint experimental and theoretical study to show that the aspect ratio (AR) of NPs and their adhesive interactions with the host medium play key roles in such anomalous diffusion behaviors of nanorods. In an adhesive polymer solution/gel (e.g., mucus), hopping diffusion enables nanorods to achieve higher diffusivity than spherical NPs with diameters equal to the minor axis of the rods, and there exists an optimal AR that leads to maximum diffusivity. In contrast, the diffusivity of nanorods decreases monotonically with increasing AR in a non-adhesive polymer solution/gel (e.g., hydroxyethyl cellulose, HEC). Our theoretical model, which captures all the experimental observations, generalizes the so-called obstruction-scaling model by incorporating the effects of the NPs/matrix interaction via the mean first passage time (MFPT) theory. This work reveals the physical origin of the anomalous diffusion behaviors of rod-like NPs in biological gels and may provide guidelines for a range of applications that involve NPs diffusion in complex porous media.
机译:众所周知,棒状纳米颗粒(NPs)在生物多孔介质(如粘液和肿瘤间隙基质)中的球形扩散率要高于球形球形,但其潜在机制仍然难以捉摸。在这里,我们提出了一项联合的实验和理论研究,以表明NP的长径比(AR)及其与宿主介质的粘附相互作用在纳米棒的这种异常扩散行为中起关键作用。在粘性聚合物溶液/凝胶(例如,粘液)中,跳跃扩散使纳米棒比直径等于棒短轴的球形NP具有更高的扩散率,并且存在导致最大扩散率的最佳AR。相反,在非粘性聚合物溶液/凝胶(例如羟乙基纤维素,HEC)中,纳米棒的扩散率随着AR的增加而单调降低。我们的理论模型涵盖了所有实验观察结果,通过平均首次通过时间(MFPT)理论结合了NP /矩阵相互作用的影响,从而概括了所谓的阻垢尺度模型。这项工作揭示了生物凝胶中棒状NP异常扩散行为的物理起源,并可能为涉及NP在复杂多孔介质中扩散的一系列应用提供指导。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2018年第3期|431-457|共27页
  • 作者单位

    CAS Key Laboratory for Nanosystem and Hierarchy Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Chinese Academy of Sciences,LNM, Institute of Mechanics, Chinese Academy of Sciences,University of Chinese Academy of Sciences;

    University of Chinese Academy of Sciences,Shanghai Institute of Materia Medica, Chinese Academy of Sciences;

    University of Chinese Academy of Sciences,Shanghai Institute of Materia Medica, Chinese Academy of Sciences;

    LNM, Institute of Mechanics, Chinese Academy of Sciences,University of Chinese Academy of Sciences;

    University of Chinese Academy of Sciences,Shanghai Institute of Materia Medica, Chinese Academy of Sciences;

    School of Engineering, Brown University;

    CAS Key Laboratory for Nanosystem and Hierarchy Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Chinese Academy of Sciences,LNM, Institute of Mechanics, Chinese Academy of Sciences,University of Chinese Academy of Sciences;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanoparticle diffusion; Shape effect; Mucus; Nanorods; Porous media; Mean first passage time;

    机译:纳米粒子扩散形状效应粘液纳米棒多孔介质平均初次通过时间;
  • 入库时间 2022-08-18 02:59:42

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