Supramolecular fluorescent sensors: An historical overview and update
[Display omitted] •Pioneering studies in the field of supramolecular fluorescent sensors are highlighted.•Recent advances involving the development of supramolecular fluorescent sensors are summarized.•Considerations of how the field may evolve and opportunities for future growth are also articulate...
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Veröffentlicht in: | Coordination chemistry reviews 2021-01, Vol.427, p.213560, Article 213560 |
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Format: | Artikel |
Sprache: | eng |
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•Pioneering studies in the field of supramolecular fluorescent sensors are highlighted.•Recent advances involving the development of supramolecular fluorescent sensors are summarized.•Considerations of how the field may evolve and opportunities for future growth are also articulated.
Since as early as 1867, molecular sensors have been recognized as being intelligent “devices” capable of addressing a variety of issues related to our environment and health (e.g., the detection of toxic pollutants or disease-related biomarkers). In this review, we focus on fluorescence-based sensors that incorporate supramolecular chemistry to achieve a desired sensing outcome. The goal is to provide an illustrative overview, rather than a comprehensive listing of all that has been done in the field. We will thus summarize early work devoted to the development of supramolecular fluorescent sensors and provide an update on recent advances in the area (mostly from 2018 onward). A particular emphasis will be placed on design strategies that may be exploited for analyte sensing and corresponding molecular platforms. Supramolecular approaches considered include, inter alia, binding-based sensing (BBS) and indicator displacement assays (IDAs). Because it has traditionally received less treatment, many of the illustrative examples chosen will involve anion sensing. Finally, this review will also include our perspectives on the future directions of the field. |
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ISSN: | 0010-8545 1873-3840 |
DOI: | 10.1016/j.ccr.2020.213560 |