1D-Zigzag Eu3+/Tb3+ Coordination Chains as Luminescent Ratiometric Thermometers Endowed with Multicolor Emission

Two homometallic Coordination Polymers (CPs) with composition [Ln(hfac)(3)bipy](n) (Ln(3+) = Eu3+, 1, and Tb3+, 2; hfac = hexafluoroacetylacetonato, bipy = 4,4 & PRIME;-bipyridine) were used to develop a family of ratiometric luminescent thermometers containing Eu3+ and Tb3+ as red and green emi...

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Veröffentlicht in:Materials 2021-10, Vol.14 (21), p.6445, Article 6445
Hauptverfasser: Bellucci, Luca, Bottaro, Gregorio, Labella, Luca, Marchetti, Fabio, Samaritani, Simona, Belli Dell'Amico, Daniela, Armelao, Lidia
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Sprache:eng
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Zusammenfassung:Two homometallic Coordination Polymers (CPs) with composition [Ln(hfac)(3)bipy](n) (Ln(3+) = Eu3+, 1, and Tb3+, 2; hfac = hexafluoroacetylacetonato, bipy = 4,4 & PRIME;-bipyridine) were used to develop a family of ratiometric luminescent thermometers containing Eu3+ and Tb3+ as red and green emitters, respectively. The thermometric properties of pure CPs and of their mixtures having an Eu3+/Tb3+ molar ratio of 1:1, 1:3, 1:5, and 1:10 (samples: Eu1Tb1, Eu1Tb3, Eu1Tb5, and Eu1Tb10) were studied in the 83-383 K temperature range. Irrespective of the chemical composition, we observed similar thermometric responses characterized by broad applicative temperature ranges (from 100 to 165 K wide), and high relative thermal sensitivity values (S-r), up to 2.40% K-1, in the physiological temperature range (298-318 K). All samples showed emissions endowed with peculiar and continuous color variation from green (83 K) to red (383 K) that can be exploited to develop a colorimetric temperature indicator. At fixed temperature, the color of the emitted light can be tuned by varying composition and excitation wavelength.
ISSN:1996-1944
1996-1944
DOI:10.3390/ma14216445