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用于纳米技术应用的凝胶和微凝胶。

Gels and microgels for nanotechnological applications.

作者信息

Fernández-Barbero Antonio, Suárez Iván J, Sierra-Martín B, Fernández-Nieves A, de Las Nieves F Javier, Marquez Manuel, Rubio-Retama J, López-Cabarcos Enrique

机构信息

Group of Complex Fluids Physics, Department of Applied Physics, University of Almería, Almería 04120, Spain.

出版信息

Adv Colloid Interface Sci. 2009 Mar-Jun;147-148:88-108. doi: 10.1016/j.cis.2008.12.004. Epub 2008 Dec 25.

DOI:10.1016/j.cis.2008.12.004
PMID:19217018
Abstract

In recent years, "smart" materials have been the focus of considerable interest, from both fundamental and applied perspectives. Polymer gels are within this category; they respond to specific environmental stimuli by changing their size. Thus, the internal structure, the refractive index, and the mechanical properties of the polymer network change. They are considered super absorbent materials, as they can absorb solvent up to several hundred times their own weight. They respond rapidly to local environmental variations, an important fact in device miniaturization and microsensor developments. As size changes are accompanied by changes in internal dimensions, microgels have found application as carriers of therapeutic drugs and as diagnostic agents. They have also been used as microreactors, optically active materials, for template synthesis of nanoparticles or fabrication of artificial muscle. In this paper we review a set of application based on the special features associated to this systems. Basic concepts on the physical-chemistry of gel swelling is first described, followed by different applications covering drug delivery, composite materials using polymer gels to modulate optical or magnetic and electrical properties, molecular imprinting, gel-based biosensors and polymer sensors and actuators used in the field of artificial muscles.

摘要

近年来,从基础和应用的角度来看,“智能”材料一直是人们相当感兴趣的焦点。聚合物凝胶属于这一类别;它们通过改变自身大小来响应特定的环境刺激。因此,聚合物网络的内部结构、折射率和机械性能会发生变化。它们被认为是高吸水性材料,因为它们能吸收高达自身重量数百倍的溶剂。它们对局部环境变化反应迅速,这在设备小型化和微传感器开发中是一个重要事实。由于尺寸变化伴随着内部尺寸的改变,微凝胶已被用作治疗药物的载体和诊断剂。它们还被用作微反应器、光学活性材料,用于纳米颗粒的模板合成或人造肌肉的制造。在本文中,我们回顾了一系列基于该系统相关特殊特性的应用。首先描述了凝胶溶胀物理化学的基本概念,随后介绍了不同的应用,包括药物递送、使用聚合物凝胶调节光学、磁性和电学性质的复合材料、分子印迹、基于凝胶的生物传感器以及用于人造肌肉领域的聚合物传感器和致动器。

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