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多响应性杂化粒子:具有金纳米棒光学触发的温敏、pH 值敏、光热敏和磁敏磁性水凝胶核。

Multi-responsive hybrid particles: thermo-, pH-, photo-, and magneto-responsive magnetic hydrogel cores with gold nanorod optical triggers.

机构信息

Department of Chemistry and the Texas Center for Superconductivity, University of Houston, 4800 Calhoun Road, Houston, TX 77204-5003, USA.

Department of Physics and the Texas Center for Superconductivity, University of Houston, 4800 Calhoun Road, Houston, TX 77204-5003, USA.

出版信息

Nanoscale. 2016 Jun 9;8(23):11851-61. doi: 10.1039/c5nr09235c.

Abstract

The research strategy described in this manuscript harnesses the attractive properties of hydrogels, gold nanorods (Aurods), and magnetic nanoparticles (MNPs) by synthesizing one unique multi-responsive nanostructure. This novel hybrid structure consists of silica-coated magnetic particles encapsulated within a thermo-responsive P(NIPAM-co-AA) hydrogel network on which Aurods are assembled. Furthermore, this research demonstrates that these composite particles respond to several forms of external stimuli (temperature, pH, light, and/or applied magnetic field) owing to their specific architecture. Exposure of the hybrid particles to external stimuli led to a systematic and reversible variation in the hydrodynamic diameter (swelling-deswelling) and thus in the optical properties of the hybrid particles (red-shifting of the plasmon band). Such stimuli-responsive volume changes can be effectively exploited in drug-delivery applications.

摘要

本文所述的研究策略利用水凝胶、金纳米棒(Aurods)和磁性纳米粒子(MNPs)的诱人特性,通过合成一种独特的多响应纳米结构来实现。这种新型的混合结构由包裹在温敏性 P(NIPAM-co-AA)水凝胶网络内的二氧化硅包覆的磁性粒子组成,金纳米棒则组装在该水凝胶网络上。此外,本研究表明,由于其特定的结构,这些复合粒子能够对外界刺激(温度、pH 值、光和/或外加磁场)做出多种形式的响应。混合粒子暴露于外部刺激会导致水动力直径(溶胀-收缩)的系统且可逆变化,从而导致混合粒子的光学性质(等离子体带的红移)发生变化。这种对刺激的体积变化可以有效地应用于药物输送应用中。

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