2019
DOI: 10.1016/j.optmat.2019.109478
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Effects of doping concentration and excitation density on optical thermometric behaviors in Ho3+/Yb3+ co-doped ZrO2 upconversion nanocrystals

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Cited by 8 publications
(3 citation statements)
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“…Figure b shows the UC spectra of the Yb/Ho-codoped ZrO 2 matrix under 980 nm excitation, which is composed of green and red bands. Similar to the Yb/Er system discussed earlier, the red-to-green ratio is different from other systems. , This difference can be attributed to the energy back transfer from Ho 3+ to Yb 3+ ions . In addition, Figure c–f shows the UC emission spectra of ZrO 2 :Yb/Tm, ZrO 2 :Yb/Tb, ZrO 2 :Yb/Pr, and ZrO 2 :Yb/Eu under the same laser power and measurement conditions.…”
Section: Resultsmentioning
confidence: 51%
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“…Figure b shows the UC spectra of the Yb/Ho-codoped ZrO 2 matrix under 980 nm excitation, which is composed of green and red bands. Similar to the Yb/Er system discussed earlier, the red-to-green ratio is different from other systems. , This difference can be attributed to the energy back transfer from Ho 3+ to Yb 3+ ions . In addition, Figure c–f shows the UC emission spectra of ZrO 2 :Yb/Tm, ZrO 2 :Yb/Tb, ZrO 2 :Yb/Pr, and ZrO 2 :Yb/Eu under the same laser power and measurement conditions.…”
Section: Resultsmentioning
confidence: 51%
“…To determine the sensing sensitivity, it is necessary to obtain the relative sensitivity ( S r ) by deriving the FIR expression from eq . S r = 1 normalF normalI normalR × | d normalF normalI normalR d T | It is found that the value of S r gradually increases with an increase of temperature from 310 to 382 K, where the maximal S r of about 0.47% K –1 is achieved, and then decreases on further increasing the temperature. Li et al have reported that the ZrO 2 :Yb/Ho nanocrystals had the maximum S r ∼ 0.4% at 340 K . Compared with this work, the ZrO 2 :Yb/Ho phosphors prepared with the MSS method have excellent sensitivity for temperature sensor application.…”
Section: Resultsmentioning
confidence: 53%
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