Supersensitive Sm2+-Activated Al2O3 Thermometric Coatings for High-Resolution Multiple Temperature Read-Outs from Luminescence

被引:35
作者
Ciric, Aleksandar [1 ]
Stojadinovic, Stevan [2 ]
Ristic, Zoran [1 ]
Zekovic, Ivana [1 ]
Kuzman, Sanja [1 ]
Antic, Zeljka [1 ]
Dramicanin, Miroslav D. [1 ]
机构
[1] Univ Belgrade, Vinca Inst Nucl Sci, Natl Inst Republ Serbia, POB 522, Belgrade 11001, Serbia
[2] Univ Belgrade, Fac Phys, Studentski Trg 12-16, Belgrade 11001, Serbia
关键词
coatings; luminescence; Sm; (2+); thermometry; γ ‐ Al; O-2; (3);
D O I
10.1002/admt.202001201
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The introduction of additional functionalities to materials is exceptionally important as it opens new applications for them. Aluminum, one of the most abundant and important materials, is coated with luminescent Sm2+-doped gamma-aluminium oxide to impart thermometric functionality. Considering the potential industrial applications, two of the most widely used aluminum alloys, 6061 and 7075, are also coated. For this purpose, plasma electrolytic oxidation (PEO), an effective technique for producing hard ceramic coatings on various metal surfaces, is used. It is shown that thermometric coatings can be produced on aluminum in one-step process by adding the raw precursor to the electrolyte. The valence reduction of Ln(3+) to Ln(2+) is achieved during the PEO process. The intense and broad (orange to deep red) emission from the coating shows supersensitivity to temperature changes over the 100-648 K range. The temperature is obtained from the coating emission using i) the emission intensity ratio method, ii) emission lifetime, and iii) emission band position with sensitivities of 4.8% K-1, 1.2% K-1, and 8 cm(-1) K-1, respectively. Several applications would benefit from the thermometric coating's excellent temperature resolution of 0.04 K and the choice of three temperature read-outs that facilitate the coating's use in different luminescence thermometry setups.
引用
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页数:10
相关论文
共 75 条
[1]   Electronic and optical properties of γ-Al2O3 from ab initio theory [J].
Ahuja, R ;
Osorio-Guillen, JM ;
de Almeida, JS ;
Holm, B ;
Ching, WY ;
Johansson, B .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2004, 16 (16) :2891-2900
[2]   Interpretation of europium(III) spectra [J].
Binnemans, Koen .
COORDINATION CHEMISTRY REVIEWS, 2015, 295 :1-45
[4]  
Blasse G., 1976, INFLUENCE CHARGE TRA
[5]   Friction Stir Welding of three dissimilar aluminium alloy used in aeronautics industry [J].
Bosneag, A. ;
Constantin, M. A. ;
Nitu, E. ;
Iordache, M. .
INTERNATIONAL CONGRESS OF AUTOMOTIVE AND TRANSPORT ENGINEERING - MOBILITY ENGINEERING AND ENVIRONMENT (CAR2017), 2017, 252
[6]   Luminescent properties and energy level structure of CaZnOS:Eu2+ [J].
Budde, B. ;
Luo, H. ;
Dorenbos, P. ;
van der Kolk, E. .
OPTICAL MATERIALS, 2017, 69 :378-381
[7]   THEORY OF THE OXIDATION OF METALS [J].
CABRERA, N ;
MOTT, NF .
REPORTS ON PROGRESS IN PHYSICS, 1948, 12 :163-184
[8]   Investigation of SrB4O7:Sm2+ as a Multimode Temperature Sensor with High Sensitivity [J].
Cao, Zhongmin ;
Wei, Xiantao ;
Zhao, Lu ;
Chen, Yonghu ;
Yin, Min .
ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (50) :34546-34551
[9]   Supersensitive Sm2+-Activated Al2O3 Thermometric Coatings for High-Resolution Multiple Temperature Read-Outs from Luminescence [J].
Ciric, Aleksandar ;
Stojadinovic, Stevan ;
Ristic, Zoran ;
Zekovic, Ivana ;
Kuzman, Sanja ;
Antic, Zeljka ;
Dramicanin, Miroslav D. .
ADVANCED MATERIALS TECHNOLOGIES, 2021, 6 (04)
[10]  
Ciric A, 2020, J ALLOY COMPD, V832