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High refractive index La-rich lanthanum borate glasses composed of isolated BO3 units

机译:高折射率La-Rich镧系硼酸盐玻璃由隔离的Bo3单位组成

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La2O3-B2O3 binary glasses were prepared by containerless processing using a levitation technique. The bulk glass-forming region in a B-rich composition was extended compared to that using conventional melt-quench techniques. Furthermore, additional glass formation was realized in an La-rich composition. The glass transition temperature and crystallization temperature of La-rich glasses are much higher than those of B-rich glasses. Both B- and La-rich glasses were colorless and transparent and had a high refractive index with low wavelength dispersion in the visible region. With the increase of the La2O3 content, the optical absorption edge in the ultraviolet (UV) region shifts to a long wavelength. An additional infrared (IR) transmittance window was observed in La-rich glasses, indicating that the La-rich borate glasses are expected to be used in optical components in a wide wavelength region. Local structural analyses using B-11 magic-angle spinning (MAS) nuclear magnetic resonance (NMR) and Raman scattering spectra revealed that every B-atom in La-rich glasses formed a planar trigonal BO3 unit and these BO3 units were entirely isolated. The evident difference from B-rich glasses where B-atoms formed a complex network structure with BO3 and BO4 units caused the characteristic physical and optical properties of La-rich glasses.
机译:使用悬浮技术通过容器加工制备La2O3-B2O3二元眼镜。与使用常规熔融淬火技术相比,将Bulk玻璃形成区域延长。此外,在富含La的组合物中实现了额外的玻璃形成。富含LA的玻璃的玻璃化转变温度和结晶温度远高于B丰的玻璃。 B-和LA和LA的眼镜都无色透明,并且在可见区域中具有低波长分散的高折射率。随着LA2O3含量的增加,紫外线(UV)区域中的光学吸收边缘变为长波长。在富含La的眼镜中观察到另外的红外线(IR)透射窗口,表明La的硼酸盐玻璃预计将在宽波长区域中的光学组件中使用。使用B-11魔法角纺丝(MAS)核磁共振(NMR)和拉曼散射光谱的局部结构分析显示,富含LA的玻璃中的每个B-原子形成平面三角形BO3单元,并且这些BO3单元完全分离。 B-Atoms与BO3和Bo4单元形成复杂网络结构的B丰玻璃的明显差异导致富含LA的眼镜的特征物理和光学性能。

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