首页> 美国卫生研究院文献>Scientific Reports >A-site compositional effects in Ga-doped hollandite materials of the form BaxCsyGa2x+yTi8−2x−yO16: implications for Cs immobilization in crystalline ceramic waste forms
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A-site compositional effects in Ga-doped hollandite materials of the form BaxCsyGa2x+yTi8−2x−yO16: implications for Cs immobilization in crystalline ceramic waste forms

机译:Bax型CyGa2x + yTi8-2x-yO16形式的掺杂Ga的方沸石材料中的A部位组成效应:对Cs固定在结晶陶瓷废料中的影响

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摘要

The hollandite structure is a promising crystalline host for Cs immobilization. A series of Ga-doped hollandite BaxCsyGa2x+yTi8−2x−yO16 (x = 0, 0.667, 1.04, 1.33; y = 1.33, 0.667, 0.24, 0) was synthesized through a solid oxide reaction method resulting in a tetragonal hollandite structure (space group I4/m). The lattice parameter associated with the tunnel dimension was found to increases as Cs substitution in the tunnel increased. A direct investigation of cation mobility in tunnels using electrochemical impedance spectroscopy was conducted to evaluate the ability of the hollandite structure to immobilize cations over a wide compositional range. Hollandite with the largest tunnel size and highest aspect ratio grain morphology resulting in rod-like microstructural features exhibited the highest ionic conductivity. The results indicate that grain size and optimized Cs stoichiometry control cation motion and by extension, the propensity for Cs release from hollandite.
机译:钙铁矿结构是用于固定Cs的有希望的晶体主体。通过固相氧化物反应合成了一系列Ga掺杂的重晶石BaxCsyGa2x + yTi8-2x-yO16(x = 0,0.667,1.04,1.33; y = 1.33,0.667,0.24,0)空间组I4 / m)。发现与隧道尺寸相关的晶格参数随着隧道中Cs替代的增加而增加。使用电化学阻抗光谱法对隧道中的阳离子迁移率进行了直接研究,以评估沸石结构在宽的组成范围内固定阳离子的能力。具有最大的隧道尺寸和最大的长径比晶粒形态的铁锰矿显示出杆状的微结构特征,显示出最高的离子电导率。结果表明,晶粒尺寸和优化的Cs化学计量控制阳离子运动,并由此扩展Cs从沸石中释放的倾向。

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