探索钇对溶胶凝胶合成的光电子学用磷酸硅玻璃的结构、物理和光学特性的影响

El Mahdi Bouabdalli, Mohamed El Jouad, Samira Touhtouh, Abdelowahed Hajjaji
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摘要

掺钇磷酸硅玻璃在光子学、光电子学、激光、生物医学应用和发光二极管(LED)等关键领域具有巨大的吸引力。本研究采用溶胶-凝胶法制备了纯硅磷酸盐玻璃和掺钇硅磷酸盐玻璃。本研究的目的是发现掺钇对磷酸硅玻璃的结构、物理和光学特性的影响。研究采用了 X 射线衍射 (XRD)、傅里叶变换红外光谱和紫外可见光分析等多种技术来检测所制备样品的结构和光学特性。X 射线衍射分析证实,所有制备的样品都呈现出无定形的性质。光学测量结果表明,三价钇离子的加入提高了制备样品的折射率。此外,还观察到样品的能带隙值有所下降。傅立叶变换红外光谱分析揭示了合成样品中存在多种振动模式。这些振动模式包括玻璃中 P-O-P 连接的对称和不对称伸缩振动、PO4 基团中 P-O 的弯曲振动、OH 基团的伸长和弯曲振动以及 P-O-H 的吸水振动。所获得的光谱有力地证实了氧化钇在硅磷酸盐玻璃体系中作为网络修饰剂的功能。光学碱性(Λth)的理论值从 0.465 增加到 0.472,而相互作用参数(A)的值则从 0.218 Å-3 降低到 0.215 Å-3。掺杂了三价钇离子的硅磷酸盐玻璃作为光电器件和光学滤光系统的材料具有巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring the influence of yttrium on the structural, physical, and optical properties of sol-gel synthesized silicophosphate glasses for photonics applications
Yttrium-incorporated silicophosphate glasses hold significant appeal in key sectors such as photonics, optoelectronics, lasers, biomedical applications, and light-emitting diodes (LEDs). In this study, the sol-gel method has been used to prepare the pure and yttrium-doped silicophosphate glasses. The aim of this study is to discover the effect of yttrium doping on the structural, physical, and optical properties of silicophosphate glasses. Various techniques such as X-ray diffraction (XRD), FTIR spectroscopy, and UV–visible analysis have been employed to examine the structural and optical properties of the prepared samples. The XRD analysis confirmed that all the prepared samples exhibited an amorphous nature. Optical measurements conducted indicated that the incorporation of trivalent yttrium ions led to an increase in the refractive index of the prepared samples. Furthermore, a decrease in the energy band-gap values of the samples was observed. The FTIR spectral analysis unveiled the presence of diverse vibration modes in the synthesized samples. These encompassed symmetrical and asymmetrical stretching vibrations of P-O-P linkages, bending vibrations of P-O in PO4 groups, elongation and flexure vibrations of OH groups, and water absorption vibrations of P-O-H in the glasses. The acquired spectra robustly substantiate the function of yttrium oxide as a network modifier within the silicophosphate glass system. The theoretical values of optical basicity (Λth) demonstrated an increase from 0.465 to 0.472, while the values of the interaction parameter (A) exhibited a decrease from 0.218 Å3 to 0.215 Å3. Silicophosphate glasses doped with trivalent yttrium ions exhibit significant potential as materials for optoelectronic devices and optical filter systems.
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