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作 者:许斌[1] 李木森[2] 宫建红[2] 章亚明[3] 牛玉超[1] 景财年[1]
机构地区:[1]山东建筑工程学院材料科学与工程系,济南250014 [2]山东大学材料科学与工程学院,济南250061 [3]山东大学物理与微电子学院,济南250100
出 处:《金属学报》2004年第8期810-814,共5页Acta Metallurgica Sinica
基 金:国家自然科学基金项目 50371048;50372035;国家教育部基金项目 20020422035;山东省自然科学基金项目 Y2002F06资助
摘 要:研究了高温高压下金刚石单晶合成时形成的Fe基金属包膜与触媒合金的Mossbauer参量,并利用它们的差异,讨论了包膜的催化作用.结果表明,虽然Fe基金属包膜与触媒合金中的含Fe相均为γ-(Fe,Ni)和Fe3C,但包膜中的γ-(Fe,Ni)与触媒合金中的γ-(Fe,Ni)相比,同质异能移IS大于后者、超精细场Bhf小于后者.这表明Fe基金属包膜内γ-(Fe,Ni)中Fe原子的3d层电子状态发生了变化,包膜的γ-(Fe,Ni)在高温高压金刚石生长过程中是一催化相.The Fe-based metal film surrounding diamond and solvent metal, formed during diamond synthesis at high temperature and high pressure (HPHT), have been investigated by means of Mossbauer spectroscopy, and the catalyzing mechanism of the film was studied from Mossbauer parameter differences between them. The results show that there are two phases containing iron atoms in both the film and the solvent metal. Compared the γ-(Fe, Ni) in the film with the γ-(Fe, Ni) in the solvent metal, the isomer shift (IS) in the former is higher than that in the later, and the hyperfine field (5hf) is lower. So it is believed that there must exist 3d-electrons transition in iron atoms in the γ-(Fe, Ni) in the film, from which the γ-(Fe, Ni) in the film could be thought as a catalyzing phase under diamond growth at HPHT.
关 键 词:人造金刚石 高温高压 金属包膜 Moessbauer谱 催化机理
分 类 号:TQ164[化学工程—高温制品工业]
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