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The structural studies of CaMgSi_2O_6, CaCoSi_2O_6 and CaNiSi_2O_6 glasses

机译:CaMgSi_2O_6,CaCoSi_2O_6和CaNiSi_2O_6玻璃的结构研究

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Local structures around Si, Ca, Mg, Co, and Ni atoms in CaMgSi_2O_6, CaCoSi_2O_6, and CaNiSi_2O_6 glasses were investigated by X-ray diffraction, XAFS, and optical absorption spectra measurements. Si-O interatomic distances of these three glasses are 1.62 A and coordination numbers of Si atoms are 4. Mg-O, Co-O, and Ni-O interatomic distances are in the range of 2.00 to 2.06 A and coordination numbers of Co and Ni atoms are estimated to be 4 in the corresponding glass. Ca-0 distances are in the range of 2.44 to 2.51 A and coordination numbers of Ca atoms are estimated to be 6 in the three glasses. Similarities of radial distribution functions obtained fromX-ray scattering intensities and XAFS spectra indicate that these glasses have a similar structure and similar local configurations of each cation. The coordination numbers of Ca, Co, and Ni atoms and the interatomic distances of Mg-O, Co-O, and Ni-O in the glasses are smaller than those in the corresponding crystals. These results show that interstitial space of SiO_4 networks of these glasses is too large for these modifier atoms, and these atoms are located on the place apart from the center of space. The result of optical absorption spectra measurements reveals that the difference of the ligand field stabilization energy of Ni atom between CaNiSi_2O_6 glass and crystal is larger than that of Co atom between CaCoSi_2O_6 glass and crystal. This result is related to the difference of the heat of vitrification from these crystals and the different partition of modifier atom into these crystals.
机译:通过X射线衍射,XAFS和光学吸收光谱测量研究了CaMgSi_2O_6,CaCoSi_2O_6和CaNiSi_2O_6玻璃中Si,Ca,Mg,Co和Ni原子周围的局部结构。这三块玻璃的Si-O原子间距离为1.62 A,Si原子的配位数为4。Mg-O,Co-O和Ni-O原子间距离在2.00至2.06 A的范围内,Co和C的配位数在相应的玻璃中,Ni原子估计为4。 Ca-0距离在2.44至2.51 A的范围内,并且在这三块玻璃中,Ca原子的配位数估计为6。从X射线散射强度和XAFS光谱获得的径向分布函数的相似性表明,这些玻璃的每种阳离子具有相似的结构和相似的局部构型。玻璃中的Ca,Co和Ni原子的配位数以及Mg-O,Co-O和Ni-O的原子间距离小于相应晶体中的原子。这些结果表明,对于这些修饰原子而言,这些玻璃的SiO_4网络的间隙空间太大,并且这些原子位于远离空间中心的位置。光吸收光谱测量结果表明,CaNiSi_2O_6玻璃与晶体之间Ni原子的配体场稳定能差大于CaCoSi_2O_6玻璃与晶体之间Co原子的配体场稳定能之差。该结果与来自这些晶体的玻璃化热的差异以及改性剂原子进入这些晶体的不同分配有关。

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