All-in-one type ESIPT-active multi-stimuli responsive 7-diethylamino-4-hydroxycoumarin-rhodamine B hydrazone as molecular switches and the reversible photochromic features of its zinc ensemble

Multi-stimuli responsive fluorescent materials have vast applications in the field of chemistry, physics and material science. Among the multifunctional materials, ESIPT-active materials have drawn prodigious attraction in recent years due to their large Stokes shifted emission and dual emissive beh...

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Veröffentlicht in:Materials chemistry frontiers 2021-11, Vol.5 (23), p.8183-8196
Hauptverfasser: Mathivanan, Moorthy, Tharmalingam, Balamurugan, Anitha, Ottoor, Lin, Chia-Her, Thiagarajan, Viruthachalam, Murugesapandian, Balasubramanian
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Sprache:eng
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Zusammenfassung:Multi-stimuli responsive fluorescent materials have vast applications in the field of chemistry, physics and material science. Among the multifunctional materials, ESIPT-active materials have drawn prodigious attraction in recent years due to their large Stokes shifted emission and dual emissive behavior. Herein, we report a novel "all-in-one" type fluorescent 7-diethylamino-4-hydroxycoumarin-rhodamine B conjugate ( DHCRH ) which shows aggregation induced emission, acidochromism, and mechanochromic luminescent features along with unique methanol responsiveness. An information protection application was executed via a write-erase-write fluorescent platform using the acidochromic feature of DHCRH . Furthermore, the DHCRH-Zn ensemble was found to exhibit reversible photochromic behavior from a yellow to pink color in the solution state upon irradiation with 365 nm UV light through an intramolecular ring opening and closing mechanism. The complex provided a long lifetime for the ring-opened form and good fatigue resistance for reversible photochromism. A new "all-in-one" type ESIPT-active multifunctional fluorescent compound ( DHCRH ) exhibits methanol responsiveness, AIE, acidochromism and mechanochromic features. Interestingly its zinc ensemble shows reversible photochromic behaviour.
ISSN:2052-1537
2052-1537
DOI:10.1039/d1qm00782c