Zhang Xinhai, Chen Qiuling, Zhang Shouhua
School of Traffic and Materials Engineering, Hebi Polytechnic, Hebi 458030, China.
Material Sciences & Engineering Department, Henan University of Technology, Lianhua Road 100, Zhengzhou 450001, China.
Molecules. 2021 Jul 26;26(15):4494. doi: 10.3390/molecules26154494.
In this study, for the first time, diamagnetic Ta ions and TaO nanocrystals were utilized to enhance the structural, mechanical, magnetic, and radiation shielding of heavy metal oxide glasses. Transparent TaO nanocrystal-doped heavy metal oxide glasses were obtained, and the embedded TaO nanocrystals had sizes ranging from 20 to 30 nm. The structural analysis of the TaO nanocrystal displays the transformation from hexagonal to orthorhombic TaO. Structures of doped glasses were studied through X-ray diffraction and infrared and Raman spectra, which reveal that TaO exists in highly doped glass as TaO octahedral units, acting as a network modifier. Ta ions strengthened the network connectivity of 1-5% TaO-doped glasses, but Ta acted as a network modifier in a 10% doped sample and changed the frame coordination units of the glass. All TaO-doped glasses exhibited improved Vicker's hardness, magnetization (9.53 × 10 emu/mol), and radiation shielding behaviors (% = 96-98.8%, = 32.012 cm/g, = 5.02 cm, = 0.0035-3.322 cm, and = 30.5) due to the increase in density and polarizability of the TaO nanocrystals.
在本研究中,首次利用抗磁性钽离子和TaO纳米晶体来增强重金属氧化物玻璃的结构、力学、磁性和辐射屏蔽性能。获得了透明的TaO纳米晶体掺杂的重金属氧化物玻璃,嵌入的TaO纳米晶体尺寸范围为20至30nm。TaO纳米晶体的结构分析显示其从六方TaO转变为正交TaO。通过X射线衍射、红外光谱和拉曼光谱研究了掺杂玻璃的结构,结果表明TaO在高掺杂玻璃中以TaO八面体单元的形式存在,起到网络改性剂的作用。Ta离子增强了1-5% TaO掺杂玻璃的网络连通性,但在10%掺杂样品中Ta起到网络改性剂的作用并改变了玻璃的骨架配位单元。由于TaO纳米晶体密度和极化率的增加,所有TaO掺杂玻璃的维氏硬度、磁化强度(9.53×10emu/mol)和辐射屏蔽性能均得到改善(% = 96-98.8%, = 32.012cm/g, = 5.02cm, = 0.0035-3.322cm, = 30.5)。