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Correlation of work function and stacking fault energy through Kelvin probe force microscopy and nanohardness in diluteα-magnesium
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作者 Yigit Türe Ali Arslan Kaya +2 位作者 Hüseyin Aydin Jiang Peng Servet Turan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第1期237-250,共14页
Electronic interactions of the Group 2A elements with magnesium have been studied through the dilute solid solutions in binary Mg-Ca,Mg-Sr and Mg-Ba systems.This investigation incorporated the difference in the‘Work ... Electronic interactions of the Group 2A elements with magnesium have been studied through the dilute solid solutions in binary Mg-Ca,Mg-Sr and Mg-Ba systems.This investigation incorporated the difference in the‘Work Function'(ΔWF)measured via Kelvin Probe Force Microscopy(KPFM),as a property directly affected by interatomic bond types,i.e.the electronic structure,nanoindentation measurements,and Stacking Fault Energy values reported in the literature.It was shown that the nano-hardness of the solid-solutionα-Mg phase changed in the order of Mg-Ca>Mg-Sr>Mg-Ba.Thus,it was shown,by also considering the nano-hardness levels,that SFE of a solid-solution is closely correlated with its‘Work Function'level.Nano-hardness measurements on the eutectics andΔWF difference between eutectic phases enabled an assessment of the relative bond strength and the pertinent electronic structures of the eutectics in the three alloys.Correlation withΔWF and at least qualitative verification of those computed SFE values with some experimental measurement techniques were considered important as those computational methods are based on zero Kelvin degree,relatively simple atomic models and a number of assumptions.As asserted by this investigation,if the results of measurement techniques can be qualitatively correlated with those of the computational methods,it can be possible to evaluate the electronic structures in alloys,starting from binary systems,going to ternary and then multi-elemental systems.Our investigation has shown that such a qualitative correlation is possible.After all,the SFE values are not treated as absolute values but rather become essential in comparative investigations when assessing the influences of alloying elements at a fundamental level,that is,free electron density distributions.Our study indicated that the principles of‘electronic metallurgy'in developing multi-elemental alloy systems can be followed via practical experimental methods,i.e.ΔWF measurements using KPFM and nanoindentation. 展开更多
关键词 Mg alloys Dilute alloys Work function Stacking fault energy Kelvin probe force microscopy Short range order Miedema NANOINDENTATION EUTECTICS
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VO_(2)(M)粉体合成与表征 被引量:3
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作者 张堃 袁新强 +3 位作者 王丹 梅晶 蒋鹏 张伟 《材料导报》 EI CAS CSCD 北大核心 2022年第13期79-83,共5页
M相二氧化钒(VO_(2)(M))是一种具有太阳光选择性透过/反射的隔热材料,以填充方式与聚甲基丙烯酸甲酯(PMMA)结合可开发出智能隔热有机玻璃,因此,高质量VO_(2)(M)粉体的合成尤为重要。本工作以五氧化二钒(V_(2)O_(5))为钒源,采用水热氧化... M相二氧化钒(VO_(2)(M))是一种具有太阳光选择性透过/反射的隔热材料,以填充方式与聚甲基丙烯酸甲酯(PMMA)结合可开发出智能隔热有机玻璃,因此,高质量VO_(2)(M)粉体的合成尤为重要。本工作以五氧化二钒(V_(2)O_(5))为钒源,采用水热氧化还原法制备VO_(2)(M)粉体,通过X射线衍射仪(XRD)、场发射电子扫描电镜(FESEM)、紫外-可见-近红外分光光度计分析退火前后二氧化钒(VO_(2))的晶型结构、结晶形态、太阳光(200~2500 nm)透光率/反射率及其变化情况,通过差示扫描量热仪(DSC)分析退火后VO_(2)相变温度及其变化情况。研究表明,在185℃水热反应48 h、800℃氩气保护退火6 h合成出晶型完整、大小均匀的规则球状VO_(2)(M)粉体,其相变温度最低(66.02℃)。 展开更多
关键词 VO_(2)(M) 水热合成 智能隔热窗 有机玻璃
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