Real-space composition–depth profiling in polymeric samples to 3 nm resolution using the 2H(3He, 1H)4He nuclear reaction

T. Kerle, F. Scheffold, A. Losch, U. Steiner, G. Schatz, J. Klein
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引用次数: 11

Abstract

Direct depth profiling techniques to date have largely lacked the necessary depth resolution to investigate interfacial phenomena of the order of the bulk correlation length (5—10 nm for a wide range of systems). Here we investigate the optimal spatial resolution and depth of probe that may be attained for composition — depth profiling of polymeric samples via nuclear reaction analysis (NRA) using the 2H(3He, 1H)4He reaction. We find that the spatial resolution can be greatly improved by using a grazing incidence geometry of the incident 3He beam on the sample, and analyzing the emitted protons in a backwards direction. This results in spatial resolutions down to about 3 nm at the sample surface, compared to a value of some 7 nm or more previously reported in earlier studies when emitted α-particles were detected in the forward direction. At the same time the depth to which samples can be profiled via the backwards emitted protons may be considerably extended relative to the α-particle detection mode, when the 3He beam impinges on the sample surface at normal incidence (up to about 4 μm into the sample for incident energies of 1.2 MeV in the proton-detection mode compared to only 1 μm for the equivalent α-particle detection mode).

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利用2H(3He, 1H)4He核反应对聚合物样品进行3nm分辨率的实时空间成分深度分析
迄今为止,直接深度剖面技术在很大程度上缺乏必要的深度分辨率来研究体相关长度(广泛的系统为5-10 nm)的界面现象。本文研究了利用2H(3He, 1H)4He反应的核反应分析(NRA)对聚合物样品进行成分-深度分析时可能获得的最佳空间分辨率和探针深度。我们发现,利用入射3He光束在样品上的掠入射几何形状,并反向分析发射的质子,可以大大提高空间分辨率。这使得样品表面的空间分辨率降至约3nm,而在早期的研究中,当发射的α-粒子在正向检测时,其分辨率约为7nm或更高。同时,相对于α-粒子检测模式,当3He束以正射入射入射到样品表面时(入射能量为1.2 MeV时,质子入射到样品表面的深度可达4 μm左右,而在等效α-粒子检测模式下,入射能量仅为1 μm),通过反向发射的质子对样品进行剖面分析的深度可大大延长。
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