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Semiconductor nanocrystal-polymer hybrid nanomaterials and their application in molecular imprinting

机译:半导体nanocrystal-polymer混合在分子纳米材料及其应用印记

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摘要

Quantum dots (QDs) are attractive semiconductor fluorescent nanomaterials with remarkable optical and electrical properties. The broad absorption spectra and high stability of QD transducers are advantageous for sensing and bioimaging. Molecular imprinting is a technique for manufacturing synthetic polymeric materials with a high recognition ability towards a target analyte. The high selectivity of the molecularly imprinted polymers (MIPs) is a result of the fabrication process based on the template-tailored polymerization of functional monomers. The three-dimensional cavities formed in the polymer network can serve as the recognition elements of sensors because of their specificity and stability. Appending specific molecularly imprinted layers to QDs is a promising strategy to enhance the stability, sensitivity, and selective fluorescence response of the resulting sensors. By merging the benefits of MIPs and QDs, inventive optical sensors are constructed. In this review, the recent synthetic strategies used for the fabrication of QD nanocrystals emphasizing various approaches to effective functionalization in aqueous environments are discussed followed by a detailed presentation of current advances in QD conjugated MIPs (MIP-QDs). Frontiers in manufacturing of specific imprinted layers of these nanomaterials are presented and factors affecting the specific behaviour of an MIP shell are identified. Finally, current limitations of MIP-QDs are defined and prospects are outlined to amplify the capability of MIP-QDs in future sensing.
机译:半导体量子点(量子点)有吸引力荧光纳米材料的光和电气性能。光谱和高稳定性的QD传感器传感和bioimaging有利。分子印迹技术制造合成高分子材料对目标识别能力高分析物。印迹聚合物(MIPs)的结果制造过程的基础上template-tailored聚合功能单体。在聚合物网络可以作为识别传感器,因为它们的元素特异性和稳定性。量子点分子印迹层是a有前途的战略,提高稳定性,灵敏度和选择性荧光反应产生的传感器。MIPs和量子点的光学传感器构造。策略用于QD的制造纳米晶体强调各种方法有效的功能化水环境是紧随其后的是一个详细的讨论表示当前QD共轭的进步MIPs (MIP-QDs)。这些纳米材料的具体印层提出了具体的影响因素MIP壳的行为识别。最后,当前MIP-QDs的局限性定义和前景是放大了在未来的感应能力MIP-QDs。

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