Otto Schott Institute of Materials Research, Friedrich Schiller University Jena, Fraunhoferstrasse 6, 07743, Jena, Germany.
FunGlass, A. Dubček University of Trenčín, Študentská 2, 911 50, Trenčín, Slovakia.
Sci Rep. 2023 Feb 2;13(1):1919. doi: 10.1038/s41598-023-28941-1.
The optical characteristics of Dy-doped phosphate and borophosphate glasses with different divalent network modifiers prepared by melt-quenching are studied. The glass sets (A) with a molar composition of 40MO-60PO and (B) with a molar composition of 40MO-20BO-40 PO are investigated, both with M = (Zn, Mg, Ca, Sr, or Ba) and all doped with 0.1 mol% DyO. Raman and fluorescence spectroscopy are used to analyse the structure and optical characteristics of these glasses. Four typical Dy emission bands in the yellow (572 nm), blue (483 nm) and red (633 and 752 nm) regions of the spectrum are observed in both sets. The fluorescence lifetimes in each glass set are correlated to the network modifier's ionic field strength. The Mg and Zn containing glasses have the longest fluorescence lifetimes. The yellow to blue emission intensity ratio of the respective bands can be used to indicate a symmetric environment around Dy ions and varies with the ionic field strength of the modifier cations: a higher ionic field strength leads to a higher yellow to blue ratio, which in turn indicates a higher asymmetrical local coordination environment of Dy ions in the glassy host network.
研究了熔融淬火法制备的具有不同二价网络修饰剂的掺镝磷酸盐和硼磷酸盐玻璃的光学特性。研究了摩尔组成分别为 40MO-60PO 的玻璃组(A)和 40MO-20BO-40PO 的玻璃组(B),其中 M=(Zn、Mg、Ca、Sr 或 Ba),并均掺杂 0.1mol%DyO。拉曼和荧光光谱用于分析这些玻璃的结构和光学特性。在两组玻璃中都观察到了四个典型的 Dy 发射带,分别位于光谱的黄色(572nm)、蓝色(483nm)和红色(633nm 和 752nm)区域。每个玻璃组中的荧光寿命与网络修饰剂的离子场强度相关。含 Mg 和 Zn 的玻璃具有最长的荧光寿命。各个带的黄-蓝发射强度比可用于指示 Dy 离子周围的对称环境,并随修饰阳离子的离子场强度而变化:较高的离子场强度导致较高的黄-蓝比,这反过来表明 Dy 离子在玻璃基质网络中的局部配位环境具有较高的不对称性。