4.8 Review

Luminescence thermometry with transition metal ions. A review

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Efficient luminescence lifetime thermometry with enhanced Mn4+-activated BaLaCa1-xMgxSbO6 red phosphors

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Summary: Introducing smaller Mg2+ ions to replace Ca2+ site in the BaLaCaSbO6 matrix leads to a significant enhancement in luminescence intensity, red-shift, and luminescence lifetime. These modulations are mainly attributed to the strengthen pressure on the local structure, superior lattice rigidity, and suppression of non-radiative transition after the substitution of smaller Mg2+. The effective lifetime-based luminescence thermometry is achieved due to thermal quenching behavior of Mn4+ ions in the matrix.

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Summary: The substitution of Sr2+ by trivalent lanthanide ions in SrTiO3 nanocrystals enhances Ti3+ near-infrared emission, leading to the development of highly sensitive luminescent nanothermometers with exceptional repeatability in measurements.

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Synergistic luminescent thermometer using co-doped Ca2GdSbO6:Mn4+/(Eu3+ or Sm3+) phosphors

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Summary: Luminescent thermometers provide a non-contact method of probing temperature with high sensitivity and response speed at the nanoscale. By co-doping the highly temperature-sensitive Mn4+ and less-sensitive Eu3+ (or Sm3+) activators into a Ca2GdSbO6 matrix, an effective thermometer is formed.

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Enhancing the temperature sensitivity of Cr3+ emissions by modification of the host's composition for fluorescence thermometry applications

Meiling Shi et al.

Summary: The LnAl(3)(BO3)(4):Cr3+ phosphors exhibit temperature sensitivity and improved relative sensitivity by tuning the energy gap between emitting levels and modifying the host's composition. This study provides insights into the development of novel FIR thermometric materials with high-sensitivity.

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Highly sensitive optical thermometer of Sm3+, Mn4+ activated LaGaO3 phosphor for the regulated thermal behavior

Ziyang Li et al.

Summary: This study investigated the luminescence properties and temperature sensing performance of Sm3+ and Mn4+ co-activated LaGaO3 phosphors, revealing their dependency on ambient temperature and optical behavior at different temperatures. The anti-thermal quenching performance of Sm3+ ions and emission declination of Mn4+ ions were observed, leading to a recorded temperature sensitivity of 4.19% K-1 and 2.09% K-1 based on the fluorescent intensity ratio (orange/red) of the phosphor. The explored film combined with LaGaO3: Sm3+, Mn4+ phosphor showed potential as a multi-color optical thermometer.

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A parallel investigation of un-doped and manganese ion-doped zinc selenide quantum dots at cryogenic temperature and application as an optical temperature sensor

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Summary: Un-doped and manganese ion doped zinc selenide quantum dots were investigated for their photoluminescence properties at different temperatures. The intensity of photoluminescence was found to be highly dependent on temperature, with the highest intensity at 77 K. The calculated activation energy values and lifetimes suggest potential applications for these quantum dots in optical temperature sensors.

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Mn2+ ions substitution inducing improvement of optical performances in ZnAl2O4: Cr3+ phosphors: Energy transfer and ratiometric optical thermometry

Bingjun Zhu et al.

Summary: Zn1-xMnxAl2O4:0.1 mol% Cr3+ (0.04 <= x <= 0.16) phosphors with single spinel phase were synthesized using sol-gel method. The Mn2+/Cr3+ co-doped ZnAl2O4 nanophosphors show green and red emission bands, with an energy transfer efficiency of 83% confirmed between Mn2+ and Cr3+. The temperature-sensitive properties show a relative sensitivity change from 3.7 %K-1 to 0.25 %K-1 over a temperature range from 80 K to 310 K.

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Modification of the thermometric performance of the lifetime-based luminescent thermometer exploiting Ti3+ emission in SrTiO3 and CaTiO3 by doping with lanthanide ions

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Summary: In this work, a strategy to modulate the thermometric parameters of luminescent thermometers based on the lifetime of Ti3+ ions by introducing lanthanide (Ln(3+)) doping in SrTiO3 and CaTiO3 is presented. The mutual effect of the distortion of the local symmetry of the Ti3+ ions associated with the introduction of Ln3+ ions and/or the Ti3+-> Ln(3+) energy transfer enabled high relative sensitivities and expanded temperature range.

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Near-Infrared Luminescent Lifetime-Based Thermometry with Mn5+-Activated Sr3(PO4)2 and Ba3(PO4)2 Phosphors

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Summary: This paper describes Mn5+-activated Sr-3(PO4)(2) and Ba-3(PO4)(2) phosphors as near-infrared lifetime-based luminescence thermometry probes. The materials were prepared by a solid-state method and their structures were confirmed by X-ray diffraction analysis. The study found that the materials showed broad and strong absorption in the range of 650 to 950 nm, with a red shift in the emission maximum. The temperature properties of the phosphors were evaluated by measuring the temperature dependence of the Mn5+ excited-state lifetime.

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Compensation effect of electron traps for enhanced fluorescence intensity ratio thermometry performance

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Summary: The rise time method, based on phosphorescence, has been used for temperature measurement with a long-term excitation approach, leading to low uncertainty in phosphor thermometry. Mg4FGeO6:Mn4+ exhibited a long rise time directly related to temperature, with high sensitivity and low uncertainty, making it suitable for temperature measurements.

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MgAl2O4:Cr3+ luminescence thermometry probe in the physiological temperatures range

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A review on fluorescence intensity ratio thermometer based on rare-earth and transition metal ions doped inorganic luminescent materials

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Multifunctional optical thermometry based on the transition metal ions doped down-conversion Gd2ZnTiO6: Bi3+, Mn4+ phosphors

Mingxuan Zhang et al.

Summary: Researchers have designed a novel ratio-metric luminescent thermometer GZTO:Bi3+, Mn4+ with excellent thermal sensitivity and a wide temperature measurement range, suitable for high-precision temperature measurement, and with a potential application prospect as a plant growth lamp.

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Summary: Dual-mode optical thermometry provides precise temperature sensing through the use of a semi-transparent glass-ceramic containing SrF2:Yb3+/Er3+ and ZnAl2O4:Cr3+ phases. The intense green up-conversion and enhanced red down-conversion luminescence of erbium and chromium, respectively, showed high temperature sensitivity. This study demonstrates the potential for accurate temperature measurements using fluorescence intensity and lifetime changes in the dual-mode optical thermometry system.

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A high-sensitivity dual-mode optical thermometry based on one-step synthesis of Mn2+:BaAl12O19-Mn4+:SrAl12O19 solid solution phosphors

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Temperature dependence of the Cr3+-DOPED Mg2TiO4 near-infrared emission

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Multimode luminescence thermometry based on emission and excitation spectra

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CERAMICS INTERNATIONAL (2021)

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