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ToF-SIMS analysis of bio-systems: Are polyatomic primary ions the solution?

机译:ToF-SIMS对生物系统的分析:解决方案是多原子一次离子吗?

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摘要

We discuss the potential of cluster ion beams for overcoming difficulties experienced within molecular analysis in conventional static secondary ion mass spectrometry (SIMS). Consideration of secondary ion yield, surface damage and molecular depth profiling is included. Examples of the greatly increased secondary ion yields from 'real world' samples such as bacterial membranes are illustrated, the increase in information then benefiting multivariate analysis techniques such as principal component analysis (PCA). The increased efficiency of secondary ion formation with cluster beams, in conjunction with the reduced subsurface damage associated with C-60 bombardment is exemplified using a depth profile through a phospholipid layer, where molecular information is obtained even following doses of 2 x 10(15) ions/cm(2). This is developed further to the identification of molecular ions from the interior of etched cells. Challenges that cannot be solved solely by increased secondary ion yields and low sample damage have been considered and complications due to the influence of matrix effects along with the effect of salt concentration on the fate of molecular signals in depth profiles of biomaterials have been investigated. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们讨论了簇离子束克服在常规静态二次离子质谱(SIMS)分子分析中遇到的困难的潜力。考虑了次级离子的收率,表面损伤和分子深度分析。举例说明了“现实世界”样品(例如细菌膜)中二次离子产率的大幅提高,然后信息的增加有益于多元分析技术(例如主成分分析(PCA))。使用穿过磷脂层的深度剖面可以例证出簇束二次离子形成效率的提高,以及与C-60轰击相关的地下损伤的减少,其中即使经过2 x 10(15)的剂量也可以获得分子信息离子/厘米(2)。这是进一步发展以从蚀刻的细胞内部识别分子离子。已经考虑了不能仅仅通过增加二次离子产量和降低样品损伤来解决的挑战,并且已经研究了由于基质效应以及盐浓度对生物材料深度剖面中的分子信号命运的影响而引起的复杂性。 (c)2006 Elsevier B.V.保留所有权利。

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