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Effect of long duration UV irradiation on diamondlike carbon surfaces in the presence of a hydrocarbon gaseous atmosphere

机译:在碳氢化合物气体气氛下长时间紫外线照射对类金刚石碳表面的影响

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摘要

Measurements of the effect of long duration UV irradiation (up to 2905 min) of flight quality diamondlike carbon charge state conversion surfaces for application in space research in the presence of a hydrocarbon atmosphere were done. An isopropanol atmosphere was used for simulating the hydrocarbon gaseous environment for an instrument on a satellite in space. Charge state conversion surfaces are used in neutral particle sensing instruments where neutral atoms have to be ionized prior to the analysis. A narrow-band (126± 5 nm) discharge lamp and a broad-band deuterium lamp (112-370 nm) were used as sources of UV radiation. The UV irradiation of a surface results in the desorption of some volatiles present on the surface and the decomposition of others. Desorption of volatiles, mostly water, is observed for both UV sources. The decomposition of the hydrocarbons and the subsequent build-up of a hydrocarbonaceous layer is only observed for the broad-band UV lamp, which is more representative for the space environment. Unfortunately, the hydrocarbonaceous layer cannot be removed thermally, i.e., it is permanent, and causes a degradation of the performance of the charge state conversion surfaces. With the present measurements we can quantify the UV influence at which the degradation of the conversion surfaces becomes noticeable.
机译:进行了飞行时间长的类金刚石碳电荷状态转换表面的长时间紫外线照射(长达2905分钟)的测量,该表面用于在碳氢化合物气氛下进行空间研究。异丙醇气氛用于模拟太空中人造卫星上仪器的碳氢化合物气体环境。电荷状态转换表面用于中性粒子感测仪器中,在分析之前必须将中性原子电离。窄带(126±5 nm)放电灯和宽带氘灯(112-370 nm)被用作紫外线辐射源。表面的紫外线照射会导致表面上存在的某些挥发物解吸,并分解其他挥发物。两种紫外线源均观察到挥发物的解吸,主要是水的解吸。仅在宽带紫外灯中观察到碳氢化合物的分解以及随后的碳氢化合物层的堆积,这对于空间环境更具代表性。不幸的是,碳氢化合物层不能被热去除,即,它是永久性的,并且导致电荷状态转换表面的性能下降。通过当前的测量,我们可以量化紫外线影响,在该处转化表面的降解变得明显。

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  • 来源
    《Journal of Applied Physics》 |2010年第11期|p.114915.1-114915.8|共8页
  • 作者单位

    Physics Institute, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;

    Physics Institute, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;

    Physics Institute, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;

    Physics Institute, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;

    Physics Institute, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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