首页> 外文期刊>International journal of mass spectrometry >Collisions of slow hydrocarbon ions CD4 center dot+, CD5+, C2D4 center dot+, and C2H5+ with room temperature and heated tungsten surfaces
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Collisions of slow hydrocarbon ions CD4 center dot+, CD5+, C2D4 center dot+, and C2H5+ with room temperature and heated tungsten surfaces

机译:慢烃离子CD4中心点+,CD5 +,C2D4中心点+和C2H5 +与室温和加热的钨表面的碰撞

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摘要

The interaction of selected hydrocarbon ions with tungsten surfaces, at room temperature and heated to 600 degrees C, was investigated at incident energies of 15-45 eV and at incident angles of 60 degrees and 45 degrees to the surface normal. Results were compared with earlier published studies on carbon (highly oriented pyrolytic graphite, HOPG) surfaces. The ion survival probability for both room temperature and heated W surfaces was in general a factor of 2-15 smaller than on carbon (HOPG) surfaces and tended to be smaller for radical cations (CD4 center dot+ and C2D4 center dot+) than for closed-shell ions (CD5(+) and C2H5+). Mass spectra, translational energy distributions and angular distributions of product ions from collisions with W surfaces were very similar to distributions estimated earlier for carbon (HOPG) surfaces. Mass spectra of radical cations on room temperature surfaces indicated fragmentation of projectile ions and reactions (of H-atom transfer and carbon-chain build-up) with hydrocarbons on the surface. Closed-shell ions showed only fragmentation processes. On heated surfaces, only fragmentations of the incident projectile ions were observed. The similarity of results on heated tungsten and HOPG surfaces may be due to substantial coverage of W surfaces with tungsten carbides originating from cracked surface hydrocarbons.
机译:在室温和加热到600摄氏度的条件下,以15-45 eV的入射能量以及与表面法线成60度和45度的入射角研究了选定的烃离子与钨表面的相互作用。将结果与较早发表的有关碳(高取向热解石墨,HOPG)表面的研究进行了比较。室温和受热W表面的离子存活几率通常比碳(HOPG)表面小2-15倍,并且自由基阳离子(CD4中心点+和C2D4中心点+)的离子存活率往往比密闭阳离子的小。壳离子(CD5(+)和C2H5 +)。与W表面碰撞产生的产物离子的质谱,平移能量分布和角度分布与碳(HOPG)表面先前估计的分布非常相似。室温表面上的自由基阳离子的质谱表明,抛射离子的碎裂以及表面上碳氢化合物的反应(H原子转移和碳链建立)。闭壳离子仅显示碎裂过程。在加热的表面上,仅观察到入射弹丸离子的碎片。在加热的钨和HOPG表面上结果的相似性可能是由于W表面被裂纹表面碳氢化合物所覆盖的碳化钨所覆盖。

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