离子液体介导的碳点作为传感探针的化学研究进展

IF 11.1 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Hafiz Muhammad Junaid , Shahid Munir , Madeeha Batool
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引用次数: 0

摘要

离子液体介导的碳点(IL-CDs)是一种新型的传感探针,可用于多种化学实体的检测。它们独特的特性,即物理、化学和光学性质,以及它们的环保性质,是吸引研究人员的主要来源。除了cd上天然存在的表面功能(如-OH, -COOH, -NH2)外,离子部分的诱导使它们成为传感应用的良好选择。本文综述了有关IL-CDs作为各种化学物质的传感探针的系统文献。此外,与普通cd相比,il - cd在结构差异、传感模式的多功能性、被传感实体类型和性能效率方面进行了严格评估,以突出在不久的将来必须解决的空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unraveling the chemistry of ionic liquid mediated carbon dots as sensing probe – A review

Unraveling the chemistry of ionic liquid mediated carbon dots as sensing probe – A review

Ionic liquid mediated carbon dots (IL-CDs) are being emerged as new sensing probe for the detection of various chemical entities. Their unique features i.e. physical, chemical and optical properties along with their eco-friendly nature are the main sources of attraction for researchers. The induction of ionic moieties in addition to their naturally existing surface functionalities such as ―OH, ―COOH, ―NH2 on CDs make them a good option for sensing applications. This review focuses on a systematic literature related to the employment of IL-CDs as sensing probes for various chemical species. Moreover, IL-CDs have been critically evaluated compared to ordinary CDs in terms of structural difference, versatility in mode of sensing, types of entities being sensed and performance efficiency to highlight the spaces which have to address in near future.

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来源期刊
Trends in Environmental Analytical Chemistry
Trends in Environmental Analytical Chemistry Chemistry-Analytical Chemistry
CiteScore
21.20
自引率
2.70%
发文量
34
审稿时长
44 days
期刊介绍: Trends in Environmental Analytical Chemistry is an authoritative journal that focuses on the dynamic field of environmental analytical chemistry. It aims to deliver concise yet insightful overviews of the latest advancements in this field. By acquiring high-quality chemical data and effectively interpreting it, we can deepen our understanding of the environment. TrEAC is committed to keeping up with the fast-paced nature of environmental analytical chemistry by providing timely coverage of innovative analytical methods used in studying environmentally relevant substances and addressing related issues.
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