剂量计
荧光粉
材料科学
光电子学
钐
铕
紫外线
紫外线
发光二极管
发光
红外线的
光学
物理
辐射
核物理学
作者
David Van der Heggen,Rugilė Žilėnaite,Eglė Ežerskytė,Verena Fritz,Katleen Korthout,Dimitri Vandenberghe,Johan De Grave,Jan Garrevoet,László Vincze,Dirk Poelman,Jonas Joos,Philippe F. Smet
标识
DOI:10.1002/adfm.202109635
摘要
Abstract Light sensors are widely used to monitor light intensities, for instance in medical applications, in agriculture or for conservation of art. Most of these sensors are electronic devices that record continuously but applications that only require information of integrated intensities, measured over a long time, could greatly benefit from an integrating dosimeter that does not require a power supply. In this work a wireless and quantitative light dosimeter is presented based on SrAl 2 O 4 :Eu 2+ ,Sm 3+ , a phosphor that exhibits stable energy storage upon exposure to blue and ultraviolet light. It is shown that a forward electron transfer from europium to samarium can be induced under illumination with blue or ultraviolet light while the reverse electron transfer can be achieved by illuminating the phosphors with green to infrared light. This reverse transfer is accomplished through excitation of the divalent samarium and results in bright, green optically stimulated luminescence. The stable energy storage, in combination with the possibility for optical read‐out, makes SrAl 2 O 4 :Eu 2+ ,Sm 3+ ideally suited to be used as an integrating light dosimeter for monochromatic to broadband light, from the ultraviolet to the near infrared. To demonstrate this, a proof of concept dosimeter was developed in which this phosphor was successfully used to measure average daylight intensities.
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