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首页> 外文期刊>Angewandte Chemie >The Role of Metal-Organic Frameworks in Electronic Sensors
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The Role of Metal-Organic Frameworks in Electronic Sensors

机译:金属 - 有机框架在电子传感器中的作用

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摘要

MOFs have a highly ordered self-assembled nanostructure, high surface area, nanoporosity with tunable size and shape, reliable host-guest interactions, and responsiveness to physical and chemical stimuli which can be exploited to address critical issues in sensor applications. On the one hand, the nanoscale pore size of MOFs ranging from less than 1 nm to approximate to 10 nm not only allows the diffusion of small molecules into the pores or through the MOF layer, but also excludes other larger molecules depending on the size, shape, and conformation of MOFs. On the other hand, MOFs with flexible structure exhibit a dynamic response to external stimuli, including guest molecules, temperature, pressure, pH, and light. Due to the unsaturated coordination metal sites and active functional groups, the interaction between certain analytes and active sites results in high selectivity. In this review, we summarize the latest studies on MOF-based electronic sensors in terms of the function of MOFs, discuss challenges, and suggest perspectives.
机译:MOF具有高度有序的自组装纳米结构、高比表面积、尺寸和形状可调的纳米孔隙率、可靠的主客体相互作用以及对物理和化学刺激的响应性,可用于解决传感器应用中的关键问题。一方面,MOF的纳米级孔径范围从小于1 nm到约10 nm,不仅允许小分子扩散到孔中或通过MOF层,而且还排除了其他大分子,具体取决于MOF的大小、形状和构象。另一方面,具有柔性结构的MOF对外界刺激表现出动态响应,包括客体分子、温度、压力、pH和光。由于不饱和配位金属位点和活性官能团,某些分析物和活性位点之间的相互作用导致高选择性。在这篇综述中,我们从MOF的功能方面总结了基于MOF的电子传感器的最新研究,讨论了挑战,并提出了展望。

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