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Hydrogen Incorporation in Crystalline Jadeite: Insight from First Principles Calculations
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作者 ZHANG Xiaoling FAN Xiaoyu +2 位作者 MENG Dawei WU Xiuling LIU Weiping 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第3期939-945,共7页
Hydrogen incorporation is critical for explaining defect energies, structure parameters and other physical characteristics of minerals and understanding mantle dynamics. This work analyzed the hydrogen complex defects... Hydrogen incorporation is critical for explaining defect energies, structure parameters and other physical characteristics of minerals and understanding mantle dynamics. This work analyzed the hydrogen complex defects in jadeite by the plane-wave pseudo-potential method based on density functional theory, and optimized the atomic positions and lattice constants in all configurations (different defective systems). Incorporation mechanisms considered for hydrogen (H) in jadeite include: (1) hydrogen incorporating with the 02 site oxygen and coexisting with M2 vacancy; (2) one H atom combined with an AI atom replacing Si in tetrahedron; (3) 4H atoms directly replacing Si in tetrahedron and (4) 3H atoms replacing Al on the M1 site. The four incorporation mechanisms mentioned above form the corresponding VNa-Hi, Alsi-Hi, Vsi-4Hi and VAr3Hi point defects. The molecular dynamics simulation to the ideal, VNa-Hi, Alsi-Hi, Vsi-4Hi and VAr3Hi point defects under the P-T conditions of 900 K, 2 GPa, the Vsa-Hi and Alsi-Hi point defects under different pressures at T = 900 K, and Alsj-Hj point defects under different temperatures at P = 3 GPa was performed to examine the preferential mode of hydrogen incorporation in jadeite by means of first-principles calculations. The calculations show that the averaged O-H bond-length in the hydrogen point defects system decreased in the order of Alsi-Hi, VNa-HI, Vsl-4Hf and VAI-3Hi. VNa-HI complex defects result in a contraction of the jadeite volume and the presence of Alsi-Hi, Vsi-4H~ and VAI-3Hi defects could increase the superceli volume, which is the most obvious in the VAt-3Hi defects. The energy of formation of Also-HI and VA[-3HI complex defects was much lower than that of other defect systems. The VAI-3Hi defects system has the lowest energy and the shortest O-H bond-length, suggesting that this system is the most favorable. The analytical results of vacancy formation energy, O-H bond- length, and the stability of the hydrogen defects in jadeite have suggested that the preferred hydration incorporation mode in jadeite is VAI-3Hi complex defect. 展开更多
关键词 jadeite first principles calculations hydrogen point defects hydrogen incorporation
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Ni晶界上金属和非金属元素的相互作用 被引量:2
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作者 方淑娟 石松鑫 +1 位作者 祝令刚 周健 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2018年第4期862-867,共6页
采用基于密度泛函理论的第一性原理计算方法,研究了常用合金化元素与非金属元素在晶界(GB)的偏析及其相互作用。选取2种类型的晶界结构进行研究:密排的晶界和较疏松的晶界。溶解能计算表明,金属和非金属元素在Σ5晶界上均有明显的偏析行... 采用基于密度泛函理论的第一性原理计算方法,研究了常用合金化元素与非金属元素在晶界(GB)的偏析及其相互作用。选取2种类型的晶界结构进行研究:密排的晶界和较疏松的晶界。溶解能计算表明,金属和非金属元素在Σ5晶界上均有明显的偏析行为,而在Σ3晶界上的偏析现象不明显。通过计算常用过渡族合金化元素与非金属杂质C、H、O、N、B在各自最稳定位置的相互作用能,发现Ru、Re、W和Ta对O有强烈的排斥作用,因此对晶界抗氧化有益处;Ta排斥H,有抗晶界氢脆的效果。通过对金属元素与非金属元素在晶界上相互作用的系统研究,为Ni合金的晶界工程提供有价值的参考。 展开更多
关键词 晶界(GB)偏析 镍基高温合金 氢脆 点缺陷 第一性原理计算
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