Li S N, Liu J B, Li J H, Wang J, Liu B X
Key Laboratory of Advanced Materials (MOE), School of Materials Science and Engineering, Tsinghua University , Beijing 100084, China.
J Phys Chem B. 2015 Feb 26;119(8):3608-18. doi: 10.1021/acs.jpcb.5b00400. Epub 2015 Feb 16.
Recent progress in the synthesis of Mg-based metallic glasses (MGs) has allowed them to be considered as potential candidates for biodegradable and bioabsorbable implant materials. In this work, we use the Mg-Zn-Ca system as a representative to investigate the effect of composition on the atomic-level structure and local chemical environment in Mg-based MGs from ab initio molecular dynamics simulations. The results suggest that the short-range order of Mg(95-x)Zn(x)Ca5 (x = 21, 25, 29, and 33) MGs is characterized by Zn-centered icosahedral and icosahedral-like clusters, which show an increasing number and a rising tendency to interpenetrate each other with the enrichment of Zn constituents. A considerable degree of charge transfer between Zn and the surrounding Mg/Ca atoms is observed through electronic structure and bonding character analysis. At Zn-rich compositions, a percolated Zn-Zn network extended throughout the entire sample is formed, upon which the accumulated charges around Zn atoms are associated into a continuous conductivity path. Such results may shed light on the improved corrosion resistance of the Zn-rich Mg-Zn-Ca MGs.
镁基金属玻璃(MGs)合成方面的最新进展使其被视为可生物降解和生物吸收植入材料的潜在候选者。在这项工作中,我们以Mg-Zn-Ca体系为代表,通过从头算分子动力学模拟研究成分对镁基金属玻璃原子级结构和局部化学环境的影响。结果表明,Mg(95-x)Zn(x)Ca5(x = 21、25、29和33)金属玻璃的短程有序结构以锌中心二十面体和类二十面体团簇为特征,随着锌成分的富集,这些团簇的数量增加且相互穿透的趋势增强。通过电子结构和键合特性分析,观察到锌与周围镁/钙原子之间存在相当程度的电荷转移。在富锌成分下,形成了贯穿整个样品的渗流锌-锌网络,锌原子周围积累的电荷在其上关联成连续的导电路径。这些结果可能有助于揭示富锌Mg-Zn-Ca金属玻璃耐腐蚀性提高的原因。