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Fundamental Properties of One-Dimensional Zinc Oxide Nanomaterials and Implementations in Various Detection Modes of Enhanced Biosensing

机译:一维氧化锌纳米材料的基本特性及其在增强生物传感的各种检测模式下的实现

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摘要

Recent bioapplications of one-dimensional (1D) zinc oxide (ZnO) nanomaterials, despite the short development period, have shown promising signs as new sensors and assay platforms offering exquisite biomolecular sensitivity and selectivity. The incorporation of 1D ZnO nanomaterials has proven beneficial to various modes of biodetection owing to their inherent properties. The more widely explored electrochemical and electrical approaches tend to capitalize on the reduced physical dimensionality, yielding a high surface-to-volume ratio, as well as on the electrical properties of ZnO. The newer development of the use of 1D ZnO nanomaterials in fluorescence-based biodetection exploits the innate optical property of their high anisotropy. This review considers stimulating research advances made to identify and understand fundamental properties of 1D ZnO nanomaterials, and examines various biosensing modes utilizing them, while focusing on the unique optical properties of individual and ensembles of 1D ZnO nanomaterials specifically pertaining to their bio-optical applications in simple and complex fluorescence assays.
机译:尽管开发周期短,但一维(1D)氧化锌(ZnO)纳米材料的最新生物应用已显示出令人鼓舞的迹象,因为新型传感器和测定平台可提供出色的生物分子敏感性和选择性。一维ZnO纳米材料的掺入由于其固有的特性已被证明对多种生物检测模式有益。更加广泛探索的电化学和电学方法倾向于利用减小的物理尺寸,产生高的表面积体积比以及ZnO的电学性质。 1D ZnO纳米材料在基于荧光的生物检测中的最新发展利用了其高各向异性的固有光学特性。这篇综述考虑了在识别和理解一维ZnO纳米材料的基本特性方面的令人振奋的研究进展,并探讨了利用它们的各种生物传感模式,同时重点研究了一维ZnO纳米材料的个体和集合体的独特光学特性,这些特性与它们在生物光学领域的应用特别相关。简单和复杂的荧光测定。

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