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Improving the optical, electrical, and dielectric characteristics of MgO doped borate glass for optoelectronic applications

机译:改善用于光电应用的 MgO 掺杂硼酸盐玻璃的光学、电气和介电特性

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摘要

Established on the appealing properties of borate glass, a new magnesium borate glass of definite composition (56 - x)B2O3-40Na(2)O-4MoO(3)-xMgO (x = 0, 2, 4, 8 mol. ) is prepared via the melt quenching technique. The present study clarified the consequence of dopant and co-dopant on the borate glass. Different physical properties are sustained to investigate and explain the optical and electrical properties of the obtained glass as a result of the replacement of B2O3 by MgO. FTIR confirmed the conversion of MgO6 into MgO4. The index of refraction increased is accompanied by a decrease in bandgap energy. At a frequency of 0.1 Hz, the ac-conductivity varies between 4 and 20 pS/cm at 25 ? and between 10 and 30 nS/cm at 150 ? without the systematic effect of MgO concentration, which indicates that heating plays the main role in improving conductivity. The metallization criterion is between 0.41 and 0.425. The computed two-photon absorption values ranged from 5.313 to 8.391 cm/GW; therefore, it is recommended that the prepared glasses are ideal for optical signal-processing equipment and are considered promising as a new member of the nonlinear optical glass.
机译:基于硼酸盐玻璃的优异性能,采用熔融淬火技术制备了成分确定(56 - x)B2O3-40Na(2)O-4MoO(3)-xMgO (x = 0, 2, 4, 8 mol. %)的新型硼酸镁玻璃。本研究阐明了掺杂剂和助掺杂剂对硼酸盐玻璃的影响。通过研究和解释MgO取代B2O3所获得的玻璃的光学和电学特性,可以持续研究和解释不同的物理性质。傅里叶变换红外光谱证实了MgO6转化为MgO4。折射率的增加伴随着带隙能量的降低。在 0.1 Hz 的频率下,交流电导率在 4 到 20 pS/cm 之间变化,在 25 ?在 150 时介于 10 和 30 nS/cm 之间?没有MgO浓度的系统效应,说明加热对提高电导率起主要作用。金属化标准介于 0.41 和 0.425 之间。计算出的双光子吸收值范围为5.313至8.391 cm/GW;因此,建议将制备的玻璃作为光信号处理设备的理想选择,并被认为是非线性光学玻璃的新成员。

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