2021
DOI: 10.1016/j.molstruc.2021.131250
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New aza[5]helicene derivative for selective Fe(III) fluorescence sensing in aqueous media and its application in water samples

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“…In recent years, many novel organic fluorescents used to detect Fe 3+ have been reported ( Song et al, 2019 ; Rani and John, 2020 ; Perumal et al, 2021 ). A fluorescence sensor ( AH2 ) was developed to sense Fe 3+ in aqueous media ( Petdum et al, 2021 ), and a fluorescence chemosensor with a microscale multi-functional metal-organic framework was also used to sense Fe 3+ , as well as Al 3+ and 2-hydroxy-1-naphthaldehyde ( Kang et al, 2016 ). Interestingly, porous tetraphenylethylene-based organic polymer ( PTOP ) could response Fe 3+ (turn-off) with high selectivity and sensitivity ( Zheng et al, 2020 ), and a “turn-on” fluorescence sensor (polymer) based on imidazole-functionalized polydiacetylene has also been used to sense Fe 3+ ( Shin et al, 2022 ).…”
Section: Introductionmentioning
confidence: 99%
“…In recent years, many novel organic fluorescents used to detect Fe 3+ have been reported ( Song et al, 2019 ; Rani and John, 2020 ; Perumal et al, 2021 ). A fluorescence sensor ( AH2 ) was developed to sense Fe 3+ in aqueous media ( Petdum et al, 2021 ), and a fluorescence chemosensor with a microscale multi-functional metal-organic framework was also used to sense Fe 3+ , as well as Al 3+ and 2-hydroxy-1-naphthaldehyde ( Kang et al, 2016 ). Interestingly, porous tetraphenylethylene-based organic polymer ( PTOP ) could response Fe 3+ (turn-off) with high selectivity and sensitivity ( Zheng et al, 2020 ), and a “turn-on” fluorescence sensor (polymer) based on imidazole-functionalized polydiacetylene has also been used to sense Fe 3+ ( Shin et al, 2022 ).…”
Section: Introductionmentioning
confidence: 99%