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Progressions in chemical and biological analytes sensing technology based on nanostructured materials: A comprehensive review

机译:基于纳米结构材料的化学和生物分析物传感技术的进展:全面审查

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摘要

In general, nanoscience technology can be best described as a medium of design, fabrication, and application of nanostructured materials, as well as a fundamental understanding of physicochemical properties and phenomena of nanomaterials and nanostructures. Owing to the fact they offer a plethora of perspectives for modern living and fascinating technological advancements, sensors that are based on different types of nanostructured materials have uplifted the technology to greater heights of late. Nanostructure-based sensors can detect biologically as well as environmentally pertinent target species with high exactitude. The recognition of the targeted species, which usually befalls through a controlled binding affair, is then communicated as a readable signal. In addition, the surface-functionalized nanostructured materials, comprising both inorganic and organic components, have recently been inspected as potential platforms for sensing applications and have huge advantages over other materials. In this extensive tutorial review, we have focused on the current development of functionalized and non-functionalized nanostructured materials that can be used in environmental and biological applications, in which these chromofluorogenic chemosensors can selectively and sensitively detect specific analytes of interest through different principles and mechanisms. Additionally, few pieces of literature on the fabrication of nanostructured materials-based sensor devices are also listed out.
机译:通常,纳米科技可以最好地描述为纳米结构材料的设计,制造和应用的介质,以及对纳米材料和纳米结构的物理化学性质和现象的基本理解。由于他们提供了现代生活和迷人的技术进步的夸张视角,基于不同类型的纳米结构材料的传感器将该技术提升至更高的高度。基于纳米结构的传感器可以检测生物学以及具有高精度的环境相关的目标物种。然后将通常通过受控结合事件预留的目标物种的识别作为可读信号。此外,最近被检查为无机和有机组分的表面官能化的纳米结构材料,用于传感应用的潜在平台,并与其他材料具有巨大优势。在这一广泛的教程评论中,我们专注于目前可用于环境和生物应用的功能化和非官能化纳米结构材料的目前,这些氟化化学传感器可以通过不同的原理和机制选择性和敏感地检测感兴趣的特定分析物。另外,还列出了纳米结构的基于材料的传感器装置的制造上很少有文献。

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