A method to improve the temperature measurement sensitivity of fluorescence intensity ratio technology in high temperature range by using double luminescence center strategy
A technology of fluorescence intensity ratio and luminescent center, which is applied in thermometers, measuring heat, measuring devices, etc., to achieve the effect of improving temperature measurement accuracy and relative sensitivity
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specific Embodiment approach 1
[0021] Specific implementation mode 1: In this implementation mode, a method for improving the temperature measurement sensitivity of the fluorescence intensity ratio technology in the high temperature range by using the double luminescence center strategy is carried out according to the following steps:
[0022] 1. Preparation of Yb 3+ -Tm 3+ -Er 3+ ion-codoped NaYF 4 Nano crystals are then pressed into tablets to obtain temperature measurement samples;
[0023]2. Put the temperature measurement sample into the hot and cold stage, use a 980nm near-infrared laser diode as the excitation light source, and use Er in the temperature range of 298 to 350K 3+ of 2 h 11 / 2 - 4 I 15 / 2 and 4 S 3 / 2 - 4 I 15 / 2 The fluorescent band is temperature-calibrated to obtain the temperature calibration curve A; in the high temperature range of 350K-448K, Er 3+ of 4 S 3 / 2 - 4 I 15 / 2 and Tm 3+ of 3 f 3 - 3 h 6 The fluorescent band generated by the transition is temperature-calib...
specific Embodiment approach 2
[0028] Specific embodiment two: the difference between this embodiment and specific embodiment one is: Yb in step one 3+ -Tm 3+ -Er 3 + ion-codoped NaYF 4 The preparation method of nanocrystals is solvothermal method. Others are the same as in the first embodiment.
specific Embodiment approach 3
[0029] Specific implementation mode three: the difference between this implementation mode and specific implementation mode one or two is: Yb in step one 3+ -Tm 3 + -Er 3+ Ion-codoped nanocrystalline NaYF 4 The preparation method specifically comprises the following steps:
[0030] (1) Under the condition of continuous magnetic stirring and nitrogen protection gas in the whole process, 0.79mmol YbCl 3 ·6H 2 O, 0.2mmol YbCl 3 ·6H 2 O and, 0.005mmol TmCl 3 ·6H 2 O and 0.005 mmol ErCl 3 ·6H 2 O was added to a 50mL round-bottom three-necked flask, and 6mL of oleic acid and 10mL of octadecene solvent were added, then the three-necked flask was sealed and heated to 160°C for 1h;
[0031] (2) Mix 6mmol NaOH and 4mmol NH 4 Add F into a glass sample bottle containing 20mL of methanol solution, and continue magnetic stirring at a temperature of 50°C for 0.5h to obtain a mixed solution A;
[0032] (3) Cool the three-neck flask in step (1) to 50°C, and add the mixed solution ...
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