首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Sol-gel deposition of multiply doped thermographic phosphor coatings Al2O3:(Cr3+, M3+) (M = Dy, Tm) for wide range surface temperature measurement application
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Sol-gel deposition of multiply doped thermographic phosphor coatings Al2O3:(Cr3+, M3+) (M = Dy, Tm) for wide range surface temperature measurement application

机译:多掺杂热成像荧光粉涂层Al2O3:(Cr3 +,M3 +)(M = Dy,Tm)的溶胶-凝胶沉积,适用于宽范围的表面温度测量应用

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摘要

A promising method of measuring surface temperatures in harsh environments is the use of thermographic phosphor coatings. There, the surface temperature is evaluated from the phosphorescence decay lifetime following a pulsed laser or flash lamp light excitation. Depending on the used dopant, single doped M3+:alpha-Al2O3 (M = Cr, Dy, Tm) emit at 694 mn (Cr3+), 488 nm (Dy3+), 584 nm (Dy3+), and 459 nm (Tm3+), respectively. However, the accessible temperature range with a single dopant is limited: for the Cr3+ transition from 293 K up to 900 K, and for the Dy3+ and Tm3+-transitions both from 1073 K up to 1473 K. In the present study a new approach is followed to extend these limitations by co-doping two dopants using the sol-gel method and dip coating of alpha-Al2O3 thin films. For that application (Dy3++Cr3+) co-doped thin alpha-Al2O3 films and (Tm3+ +Cr3+) co-doped alpha-Al2O3 films with thicknesses of 4-6 mu m were prepared, and the temperature-dependent luminescence properties (emission spectra and lifetimes) were analysed after pulsed laser excitation in the UV (355 nm). The phosphorescence lifetime as a function of temperature were measured between 293 K and 1473 K. A considerably extended range for surface temperature evaluation was established following this new approach by combining different dopants on the molecular level.
机译:在恶劣环境中测量表面温度的一种有前途的方法是使用热成像荧光粉涂层。在此,根据脉冲激光或闪光灯激发后的磷光衰减寿命来评估表面温度。取决于所使用的掺杂剂,单掺杂的M3 +:α-Al2O3(M = Cr,Dy,Tm)分别发射6.94亿(Cr3 +),488 nm(Dy3 +),584 nm(Dy3 +)和459 nm(Tm3 +)。 。但是,单一掺杂剂的可达到温度范围是有限的:对于从293 K到900 K的Cr3 +跃迁,以及从1073 K到1473 K的Dy3 +和Tm3 +跃迁。在本研究中,一种新方法是随后通过使用溶胶-凝胶法共掺杂两种掺杂剂并浸涂α-Al2O3薄膜来扩展这些限制。对于该应用,制备了厚度为4-6μm的(Dy3 ++ Cr3 +)共掺杂的α-Al2O3薄膜和(Tm3 + + Cr3 +)共掺杂的α-Al2O3膜,并且随温度变化的发光特性(发射在355 nm的紫外线中进行脉冲激光激发后,对光谱和寿命进行了分析。在293 K和1473 K之间测量了磷光寿命与温度的关系。采用这种新方法,通过在分子水平上结合不同的掺杂剂,建立了相当宽的表面温度评估范围。

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