Characterization of a Novel System of Bismuth Lead Borosilicate Glass Containing Copper

Madabushanam Gopi Krishna, R. Guntu, M. Shareefuddin, N. V. Prasad
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Abstract

Objectives: The primary objective of the present investigation was to examine the impact of Bi3+ ions on the optical, radiation shielding, dielectric and structural characteristics of lead borosilicate glasses doped with CuO. Method: In this view, we planned to utilize the conventional rapid melt quenching method to produce glasses with the following chemical composition: 25 PbO + 15 B2O3 + 0.1 CuO + (59.9-x) SiO2 :x Bi2O3 (0≤x≤12). Findings: The samples' non-crystalline characteristics were validated through XRD and SEM analysis, respectively, while their glass-forming capabilities were assessed through DTA studies. Utilizing the FT–IR and Raman analyses, the numerous structural units were determined. According to the findings of the FT-IR, and Raman analyses, the degree of disorder in the glass network increased. By means of optical absorption experiments, the optical properties of glasses were determined. The results obtained from optical absorption spectral investigations indicated that the concentration of octahedral Cu2+ ions increased gradually as the Bi2O3 concentration increased to 12 mol %. The dielectric properties of the glasses, suggested that the dielectric constant values of glasses containing Bi2O3 in concentrations below 12 mol% increase gradually. Additionally, the radiation shielding properties of the glasses are investigated. The values of radiation protection ability found to be purely function of Bi2O3 concentration. Novelty: The results suggest that the glasses' thermal stability, dielectric constant, optical band gap and radiation shielding ability values purely function of Bi2O3 concentration. Keywords: Borosilicate glasses, Thermal stability, Optical absorption, Radiation shielding properties, Dielectricsq
含铜铋铅硼硅玻璃新体系的特性分析
研究目的本研究的主要目的是考察 Bi3+ 离子对掺杂 CuO 的硼硅酸铅玻璃的光学特性、辐射屏蔽特性、介电特性和结构特性的影响。研究方法:为此,我们计划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 CuO + (59.9-x) SiO2 :x Bi2O3 (0≤x≤12)。研究结果分别通过 XRD 和 SEM 分析验证了样品的非晶特性,同时通过 DTA 研究评估了它们的玻璃形成能力。利用傅立叶变换红外光谱和拉曼分析,确定了多种结构单元。根据傅立叶变换红外光谱和拉曼分析的结果,玻璃网络的无序程度有所增加。通过光学吸收实验,确定了玻璃的光学特性。光学吸收光谱研究结果表明,随着 Bi2O3 浓度增至 12 mol%,八面体 Cu2+ 离子的浓度逐渐增加。玻璃的介电性能表明,Bi2O3 浓度低于 12 摩尔%时,玻璃的介电常数值会逐渐增加。此外,还研究了玻璃的辐射屏蔽性能。发现辐射防护能力值完全是 Bi2O3 浓度的函数。新颖性:研究结果表明,玻璃的热稳定性、介电常数、光带隙和辐射屏蔽能力值完全是 Bi2O3 浓度的函数。关键词: 硼硅玻璃 热稳定性硼硅玻璃 热稳定性 光学吸收 辐射屏蔽性能 介电常数
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