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首页> 外文期刊>Journal of the European Ceramic Society >Atomistic modeling of the effect of codoping on the atomistic structure of interfaces in α-alumina
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Atomistic modeling of the effect of codoping on the atomistic structure of interfaces in α-alumina

机译:共掺杂对α-氧化铝界面原子结构影响的原子建模

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Sintering aids or dopants have often been used successfully to limit the grain growth of alumina during sintering. Recently codoping of alumina with transition elements has been reported to produce additional effects in comparison to single doping in enhancement of creep and real in-line transmittance of light. The current study attempts to address the issue of the atomistic mechanism behind these experimentally observed codoping effects. The effect of codoping on the atomistic structure of a series of La-Y, Mg-Y, La-Mg codopcd a-alumina interfaces was studied using energy minimization calculations. The segregation energy for single doping as well as codoping is negative for all the surfaces and grain boundaries. While, there is no significant energetic gain for La-Y cosegregation in comparison to single doping whereas segregation energies for Mg-Y and Mg-La codoping is more negative than single doping. A specific arrangement of dopants (associative effect) is also observed in La-Y codoped interfaces. Both mechanisms can thus contribute to the improved microstructures and properties.
机译:烧结助剂或掺杂剂通常已成功地用于限制烧结过程中氧化铝的晶粒长大。与单掺杂相比,最近报道了氧化铝与过渡元素的共掺杂在光的蠕变和实际在线透射率的增强方面产生了额外的效果。当前的研究试图解决这些实验观察到的共掺杂效应背后的原子机理问题。使用能量最小化计算研究了共掺杂对一系列La-Y,Mg-Y,La-Mg codopcd a-氧化铝界面的原子结构的影响。对于所有表面和晶界,一次掺杂和共掺杂的偏析能均为负。虽然,与单掺杂相比,La-Y共偏析没有显着的能量增益,而Mg-Y和Mg-La共掺杂的偏析能量比单掺杂更为不利。在La-Y共掺杂界面中也观察到了特定的掺杂剂排列(缔合效应)。因此,两种机理都可以有助于改善的微结构和性能。

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