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基于量子点的荧光探针用于选择性检测重金属离子。

Quantum Dots Based Fluorescent Probe for the Selective Detection of Heavy Metal Ions.

机构信息

National Centre for Nanoscience and Nanotechnology, University of Mumbai, Vidyanagari, Kalina, Santacruz (East), Mumbai, 400098, India.

出版信息

J Fluoresc. 2021 Sep;31(5):1241-1250. doi: 10.1007/s10895-021-02755-8. Epub 2021 Jun 28.

Abstract

Heavy metal ions are one of the primary causes of environmental pollution. A marshal effect of heavy metal ions is a paramount ultimatum to humans, aquatic animals and other organisms present in nature. Multitude arrays of materials have been proclaimed for sensing of heavy metal ions and also many methodologies are applied for heavy metal ion sensing. Due to their toxicity and non-biodegradability, it is required to be perceived immediately prior to its manifestation of harmful effects. Quantum Dots (QDs) are zero-dimensional nanomaterial particles and owing to their distinctive optical and electronic properties, they are utilized as nanosensors. QDs have enriched fluorescence properties which includes broad excitation spectrum, narrow emission spectrum and photostability. QDs offer eclectic and sensitive detection of heavy metal ions due to presence of discrete capping agents and different functional groups present on the surface of the QDs. These capping layers and functional groups attune the sensing capability of the QDs, which leverages the interactions of QDs with various analytes by different mechanisms. This review, comprising of papers from 2011 to 2020,focuses on heavy metal ions sensing potential of various quantum dots and its applicability as a nanosensor for on field heavy metal ions detection in water. Quantum Dots (QDs) based Heavy Metal Detection.

摘要

重金属离子是环境污染的主要原因之一。重金属离子的磁滞效应对人类、水生动物和自然界中的其他生物构成了极大的威胁。已经有许多材料被宣称可用于检测重金属离子,也有许多方法被应用于重金属离子的检测。由于它们的毒性和不可生物降解性,在其产生有害影响之前,需要立即对其进行感知。量子点 (QD) 是零维纳米材料颗粒,由于其独特的光学和电子特性,它们被用作纳米传感器。QD 具有丰富的荧光特性,包括宽激发光谱、窄发射光谱和光稳定性。由于 QD 表面存在离散的封端剂和不同的官能团,因此可以通过不同的机制进行检测。这些封端层和官能团调整了 QD 的传感能力,从而增强了 QD 与各种分析物的相互作用。本综述包括 2011 年至 2020 年的论文,重点介绍了各种量子点对重金属离子的传感潜力及其作为纳米传感器在水中现场检测重金属离子的适用性。基于量子点的重金属检测。

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