Bi2O3 对掺杂 TiO2 的铅硼硅玻璃的结构、光学、辐射屏蔽和介电分析的影响

Madabushanam Gopi Krishna, R. Guntu, N. R. K. Chand, M. Shareefuddin, N. V. Prasad
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摘要

研究目的本研究的主要目的是评估氧化铋对低浓度掺杂氧化钛的硼硅酸铅玻璃的光学特性、辐射屏蔽特性和介电行为的影响。方法:我们打算采用传统的快速熔体淬火法生产化学成分如下的玻璃:25 PbO+ 15 B2O3 + 0.1 TiO2 + (59.9-x) SiO2 : x Bi2O3(0≤x≤12)。研究结果XRD 和 SEM 分析用于确认样品的非结晶特性,而 DTA 研究则用于评估样品形成玻璃的能力。利用傅立叶变换红外光谱和拉曼分析确定了多种结构元素。玻璃的光学特性是通过光学吸收研究确定的。光学吸收光谱分析的结果显示,八面体 Ti4+ 离子的浓度随着 Bi2O3 摩尔浓度的增加而逐渐增加。为了分析玻璃的介电性能,使用了触变分析仪。调查结果表明,Bi2O3 含量低于 12 摩尔%时,玻璃的介电常数值会逐渐增加。此外,还对玻璃的辐射屏蔽特性进行了进一步研究。新颖性:研究结果表明,玻璃的光带隙值、辐射屏蔽能力、介电常数和热稳定性都与其 Bi2O3 浓度直接相关。关键词:傅立叶变换红外光谱傅立叶变换红外光谱、拉曼光谱、OBG、MAC、活化能
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Impact of Bi2O3 on the Structural, Optical, Radiation Shielding, and Dielectric Analysis of Lead Borosilicate Glasses Doped with TiO2
Objective: The principal aim of this investigation was to assess the impact of bismuth oxide on the optical properties, radiation shielding characteristics, and dielectric behavior of lead borosilicate glasses doped with titanium oxide at a low concentration. Method: We intended to utilize the conventional rapid melt quenching method to produce glasses with the following chemical composition: 25 PbO+ 15 B2O3 + 0.1 TiO2 + (59.9-x) SiO2 : x Bi2O3(0≤x≤12). Findings: XRD and SEM analyses were used to confirm the samples' non-crystalline properties, while DTA investigations were used to evaluate the samples' ability to form glass. The numerous structural elements were identified through the utilization of FT–IR and Raman analyses. The optical characteristics of glasses are determined by optical absorption studies. The findings derived from optical absorption spectral analyses revealed a progressive increase in the concentration of octahedral Ti4+ ions with the mol% Bi2O3 concentration. In order to analyse the glasses' dielectric properties, an impudence analyser was employed. The results obtained from these inquiries indicate that glasses do contain Bi2O3 at concentrations lower than 12 mol% experience a progressive increase in dielectric constant values. Further investigation is conducted into the radiation shielding properties of the glasses. Novelty: The findings indicate that the values of the glasses' optical band gap, radiation shielding ability, dielectric constant, and thermal stability are all directly correlated with their Bi2O3 concentration. Keywords: FT­IR, Raman, OBG, MAC, Activation Energy
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