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In-situ polymerized molecularly imprinted polymeric thin films usedas sensing layers in surface plasmon resonance sensors:Mini-review focused on 2010-2011

机译:原位聚合分子印迹聚合物薄膜用作表面等离振子共振传感器中的传感层:综述于2010-2011

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摘要

This review provides a short overview of polymeric thin films incorporating molecular imprints within their 3D macromolecular structure as synthetic recognition elements and prepared by in situ polymerization for surface plasmon resonance application. This review starts with a brief reminder of the principle of surface plasmon resonance detection. The second section is focused on molecularly imprinted materials. Bulk and thin film polymer formats can be obtained by free radical polymer-ization, where the functional monomer interacts specifically with the template and the cross-linker controls the rigidity of the imprinted cavities. Grafting polymerization is presented as a method of choice for covalent attachment of ultra-thin molecularly imprinted films on a surface plasmon resonance metallic substrate. Examples of electropolymerized thin films are also provided. In the rest of this contribution, surface plasmon resonance applications of molecularly imprinted polymers reported mainly over the last two years are presented with respect to the preparation mode. Also, applications of gold nanoparticle/molecularly imprinted polymer composites for the design of sur-face plasmon resonance-based sensors with enhanced sensitivity due to the phenomenon of localized surface plasmon resonance induced by the presence of gold nanoparticles are summarized.
机译:这篇综述简要概述了聚合物薄膜,该聚合物薄膜在其3D大分子结构内掺入了分子印记作为合成识别元件,并通过原位聚合制备用于表面等离振子共振应用。本文首先简要回顾了表面等离振子共振检测的原理。第二部分着重于分子印迹材料。本体和薄膜聚合物形式可通过自由基聚合获得,其中功能性单体与模板发生特异性相互作用,而交联剂控制压印腔体的刚度。接枝聚合是将超薄分子印迹膜共价附着在表面等离振子共振金属基底上的一种选择方法。还提供了电聚合薄膜的实例。在此贡献的其余部分中,就制备方式介绍了近两年主要报道的分子印迹聚合物的表面等离子体共振应用。此外,归纳了金纳米颗粒/分子印迹聚合物复合材料在设计基于表面等离振子共振的传感器方面的应用,该传感器由于由于存在金纳米颗粒而引起的局部表面等离振子共振现象而具有增强的灵敏度。

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