Centro de Reconocimiento Molecular y Desarrollo Tecnológico, (IDM), Unidad Mixta Universidad Politécnica de Valencia-Universitat de València, 46010 Valencia, Spain.
Anal Bioanal Chem. 2011 Jan;399(1):55-74. doi: 10.1007/s00216-010-4198-2. Epub 2010 Sep 25.
This review highlights how the combination of supramolecular principles and nanoscopic solid structures enables the design of new hybrid sensing ensembles with improved sensitivity and/or selectivity and for the targeting of analytes for which selectivity is hard to achieve by conventional methods. Such ideas are bridging the gap between molecules, materials sciences and nanotechnology. Relevant examples will be detailed, taking into account functional aspects such as (1) enhanced coordination of functionalized solids, (2) enhanced signalling through preorganization, (3) signalling by assembly-disassembly of nanoscopic objects, (4) biomimetic probes utilizing discrimination by polarity and size and (5) distinct switching and gating protocols. These strategies are opening new prospects for sensor research and signalling paradigms at the frontier between nanotechnology, smart materials and supramolecular chemistry.
本文综述了超分子原理和纳米固体结构的结合如何使设计新的混合传感组合成为可能,从而提高灵敏度和/或选择性,并针对传统方法难以实现选择性的分析物进行靶向。这些想法正在缩小分子、材料科学和纳米技术之间的差距。将详细考虑功能方面的相关示例,包括:(1)功能化固体的增强配位;(2)通过预组织增强信号;(3)通过纳米物体的组装-解组装进行信号;(4)利用极性和大小的区分进行生物模拟探针;(5)独特的开关和门控协议。这些策略为纳米技术、智能材料和超分子化学之间的前沿传感器研究和信号传递范式开辟了新的前景。