Li Dongxiang, He Qiang, Li Junbai
Beijing National Laboratory for Molecular Sciences (BNLMS), International Joint Lab, CAS Key Lab of Colloid and Interface Science, Institute of Chemistry, Chinese Academy of Sciences, Zhong Guan Cun, Beijing 100190, PR China.
Adv Colloid Interface Sci. 2009 Jul 30;149(1-2):28-38. doi: 10.1016/j.cis.2008.12.007. Epub 2009 Jan 20.
Recently, the polymer modified gold nanoparticles have showed much potential in advanced materials. In this paper, the smart core/shell nanocomposites of intelligent polymers and gold nanoparticles were reviewed from the preparation, properties to potential applications. The main preparative methods were detailed including the direct-synthesis method, "graft-to" strategy, "graft-from" strategy and physical adsorption method, in which the surface-initiated radical polymerization such as atom-transfer radical polymerization and reversible-addition fragmentation chain-transfer radical polymerization displayed several advantages for well-defined nanostructures. The stimuli-responsive property and potential uses of such-fabricated nanocomposites were sorted to thermosensitive, pH responsive and other responsive catalogues to describe more clarified. In application, the combination of gold nanoparticles and intelligent polymers provides a facile path for intelligent materials and might be encouraged to hold enormous chances in biotechnology and nanotechnology.
近年来,聚合物修饰的金纳米粒子在先进材料领域展现出了巨大潜力。本文从制备、性能到潜在应用等方面对智能聚合物与金纳米粒子的核壳型纳米复合材料进行了综述。详细介绍了主要的制备方法,包括直接合成法、“接枝到”策略、“接枝自”策略和物理吸附法,其中原子转移自由基聚合和可逆加成-断裂链转移自由基聚合等表面引发自由基聚合方法在制备结构明确的纳米结构方面具有诸多优势。将此类制备的纳米复合材料的刺激响应特性和潜在用途分类为热敏、pH响应及其他响应类别,以便更清晰地描述。在应用方面,金纳米粒子与智能聚合物的结合为智能材料提供了一条便捷途径,有望在生物技术和纳米技术领域拥有巨大机遇。