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Strengthening of anticorrosion passivity by newly developed multi-silicon coatings

机译:通过新开发的多晶硅涂层增强防腐钝化性

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The combination of ultrasonic vibratory beam and gas chromatography-mass spectrometry techniques was used to produce monomers of new organo-multi-silicon coating materials. The reactants of these materials were exposed to high passive conditions through all the experimental phase. By the aid of a capillary column, RTX-5MS, and an El detector of the Finnigan-Mat GC, a sample was analyzed on the basis of the rules of the predominant M-1(s) ions of the main chromatographic pattern. Fragmentation analysis of the high resolution mass spectrometry patterns led to detection of three new compound structures, designated A, B, and C isomers. These isomers were identified by the differences between their retention times. The mechanistic root for each of the three isomers is fully discussed herein by a process of stepped number of cleavages per molecule.
机译:超声振动束和气相色谱-质谱技术的结合被用来生产新型有机多硅涂层材料的单体。在整个实验阶段中,这些材料的反应物都处于高被动条件下。借助于毛细管柱,RTX-5MS和Finnigan-Mat GC的El检测器,根据主要色谱图的主要M-1(s)离子规则对样品进行了分析。高分辨率质谱图谱的碎片分析导致检测到三个新的化合物结构,称为A,B和C异构体。这些异构体的保留时间之间存在差异。三种异构体中每一种的机理根在本文中通过每个分子的裂解级数逐步进行讨论。

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