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Hydrogen permeation behavior in polycrystalline nickel implanted with various elements

机译:植入各种元素的多晶镍中的氢渗透行为

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The entry and transport of hydrogen in polycrystalline nickel implanted with various elements (He, Ar, B, P, S, Bi, Ni, Y, Pt, As, Pb and Sb) has been investigated in a fluence range of 1×10{sup}14 to 2×10{sup}17ions/cm{sup}2 using an electrochemical permeation technique and etching technique, where the elements used are categorized as follows: inert elements (He and Ar), the substrate element (Ni), metalloids (P, S, Sb and As), a catalytic element (Pt) and the other elements (Pb, Bi, Y and B). It was found that the effective diffusion coefficient of hydrogen and the effective solubility were largely dependent upon fluence and elements in comparison to those obtained from non-implanted nickel. The results obtained were qualitatively explained in terms of gas bubbles and defects generated by implantation, compressive stress, catalytic effect, the formation of amorphous phase and so on.
机译:已经研究了植入各种元素的多晶镍中氢气的进入和运输(He,Ar,B,P,S,Bi,Ni,Y,Pt,Pb和Sb),流量范围为1×10 {使用电化学渗透技术和蚀刻技术,使用电化学渗透技术和蚀刻技术,其中所使用的元件分类如下:惰性元素(HE和AR),基板元素(Ni),金属体(P,S,Sb和As),催化元素(Pt)和其他元素(Pb,Bi,Y和B)。发现氢的有效扩散系数和有效溶解度大大依赖于流量和元素与从非植入镍获得的那些相比。在植入,压缩应力,催化作用,非晶相形成等方面,在气泡和缺陷方面得到了定性解释的结果。

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