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首页> 外文期刊>Scientific reports. >Atomistic scale investigation of cation ordering and phase stability in Cs-substituted Ba 1.33 Zn 1.33 Ti 6.67 O 16 , Ba 1.33 Ga 2.66 Ti 5.67 O 16 and Ba 1.33 Al 2.66 Ti 5.33 O 16 hollandite
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Atomistic scale investigation of cation ordering and phase stability in Cs-substituted Ba 1.33 Zn 1.33 Ti 6.67 O 16 , Ba 1.33 Ga 2.66 Ti 5.67 O 16 and Ba 1.33 Al 2.66 Ti 5.33 O 16 hollandite

机译:CS-取代的BA 1.33 Zn 1.33 o 16,Ba 1.33 Ga 2.66 Ti 5.67 o1.33 A1.33 A1.33 A1.33 o1.33 o 16荷兰钛矿阳离子排序和相位稳定性阳离子排序及相位稳定性研究。

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The titanate-based hollandite structure is proposed as an effective ceramic waste form for Cs-immobilization. In this study, quantum-mechanical calculations were used to quantify the impact of A-site and B-site ordering on the structural stability of hollandite with compositions BaxCsy(MzTi8-z)O16, where M?=?Zn2+, Ga3+, and Al3+. The calculated enthalpy of formation agrees with experimental measurements of related hollandite phases from melt solution calorimetry. Ground state geometry optimizations show that, for intermediate compositions (e.g., CsBaGa6Ti18O48), the presence of both Cs and Ba in the A-site tunnels is not energetically favored. However, the decay heat generated during storage of the Cs-containing waste form may overcome the energetics of Ba and Cs mixing in the tunnel structure of hollandite. The ability of the hollandite structure to accommodate the radioparagenesis of Cs to Ba is critical for long term performance of the waste. For the first time, B-site ordering was observed along the tunnel direction ([001] zone axis) for the Ga-hollandite compositions, as well as the intermediate Al-hollandite composition. These compositionally dependent structural features, and associated formation enthalpies, are of importance to the stability and radiation damage tolerance of ceramic waste forms.
机译:基于钛酸盐的荷兰钛矿结构是一种用于CS-Immobilization的有效陶瓷废物形式。在本研究中,量子 - 机械计算用于量化A现场和B位点对与组合物Baxcsy(MZTI8-Z)O16的结构稳定性的影响,其中M?=γ+,Ga3 +和Al3 + 。计算的形成焓与来自熔融溶液热量的相关荷兰钛矿相的实验测量。地面几何优化表明,对于中间组合物(例如,CSBAGA6TI18O48),A现场隧道中的CS和BA的存在不会充满活力。然而,在含Cs的废物形式的储存期间产生的衰变热量可以克服荷兰钛矿隧道结构中BA和CS混合的能量。荷兰钛矿结构能够容纳CS至Ba的放射性作用对于废物的长期性能至关重要。首次,沿着隧道方向(区域轴线)观察到Ba-Hollandite组合物的B-位点排序,以及中间体Al-Hollandite组合物。这些组成依赖性结构特征和相关的形成焓对于陶瓷废物形式的稳定性和辐射损伤耐受性具有重要性。

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