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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Plasmonic and chiroplasmonic nanobiosensors based on gold nanoparticles
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Plasmonic and chiroplasmonic nanobiosensors based on gold nanoparticles

机译:基于金纳米颗粒的等离子体和颅骨型纳米极细管

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Development of optical nanobiosensors has emerged as one of the most important bioresearch areas of interest over the past decades especially in the modem innovations in the design and utilization of sensing platforms. The application of nanobiosensors has been accelerated with the introduction of plasmonic NPs, which overcome the most of the limitations in the case of conventional optical nanobiosensors. Since the plasmonic AuNPs-based nanobiosensors provide high potential achievements to develop promising platforms in fully integrated multiplex assays, some well-developed investigations are clearly required to improve the current technologies and integration of multiple signal inputs. Therefore, in this literature, we summarized the performance and achievements of optical nanobiosensors according to plasmonic rules of AuNPs, including SPR, LSPR, SERS and chiroptical phenomena. Also, we investigated the effects of the physicochemical properties of AuNPs such as size, shape, composition, and assembly on the plasmonic signal propagation in AuNPs-based nanobiosensors. Moreover, we presented an overview on the current state of plasmonic AuNPs-based nanobiosensors in the biomedical activities. Besides, this paper looks at the current and future challenges and opportunities of ongoing efforts to achieve the potential applications of AuNPs-based optical plasmonic nanobiosensors in integration with other nanomaterials. Taken together, the main focus of this paper is to provide some applicable information to develop current methodologies in fabrication of potential AuNPs-based nanobiosensors for detection of a wide range of analytes.
机译:光学纳米极管传感器的发展已成为过去几十年中最重要的生物研究领域之一,尤其是在传感平台设计和利用的调制解调器创新中。随着等离子体NPS的引入,纳米极端增强剂的应用已经加速,这克服了常规光学纳米型患者的情况下的大部分限制。由于基于等离子体的型纳米型纳米极增传感器提供了高潜在的成果,以便在完全集成的多重测定中开发有前途的平台,显然需要一些良好的调查来改善当前技术和多个信号输入的集成。因此,在本文中,我们总结了根据AUNP的等离子体规则的光学纳米极端传感器的性能和成果,包括SPR,LSPR,SERS和Chiroottical现象。此外,我们研究了肛交型,形状,组成和组装等尺寸,形状,组成和组装等型型纳米型纳米型纳米血管传感器的血管信号繁殖的影响。此外,我们概述了生物医学活动中基于等离子体AUNPS的纳米血管传感器的当前状态。此外,本文介绍了当前和未来的挑战和持续努力的机遇,以实现基于AUNPS的光学等级管纳米型纳米型群体与其他纳米材料集成的潜在应用。在一起,本文的主要焦点是提供一些适用的信息,可以在制造潜在的基于AUNPS的纳米性纳米极来源中制造目前的方法,以检测各种分析物。

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