Masuno Atsunobu, Iwata Takashi, Yanaba Yutaka, Sasaki Shunta, Inoue Hiroyuki, Watanabe Yasuhiro
Graduate School of Science and Technology, Hirosaki University, 3 Bunkyo-cho, Hirosaki, Aomori 036-8561, Japan.
Shibaura Institute of Technology, 3-7-5 Toyosu, Koto-ku, Tokyo 135-8548, Japan.
Dalton Trans. 2019 Aug 7;48(29):10804-10811. doi: 10.1039/c9dt01715a. Epub 2019 Jun 18.
LaO-BO 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 LaO 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 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 BO unit and these BO units were entirely isolated. The evident difference from B-rich glasses where B-atoms formed a complex network structure with BO and BO units caused the characteristic physical and optical properties of La-rich glasses.
采用悬浮技术通过无容器加工制备了LaO-BO二元玻璃。与传统的熔体淬火技术相比,富硼成分中的块状玻璃形成区域得到了扩展。此外,在富镧成分中实现了额外的玻璃形成。富镧玻璃的玻璃转变温度和结晶温度远高于富硼玻璃。富硼和富镧玻璃均无色透明,在可见光区域具有高折射率和低波长色散。随着LaO含量的增加,紫外(UV)区域的光吸收边缘向长波长方向移动。在富镧玻璃中观察到一个额外的红外(IR)透射窗口,这表明富镧硼酸盐玻璃有望用于宽波长区域的光学元件。使用硼魔角旋转(MAS)核磁共振(NMR)和拉曼散射光谱进行的局部结构分析表明,富镧玻璃中的每个硼原子都形成了平面三角BO单元,并且这些BO单元完全孤立。与富硼玻璃中硼原子与BO和BO单元形成复杂网络结构的明显差异导致了富镧玻璃的特征物理和光学性质。