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在长周期轨道环境卫星(LDEF)航天器撞击坑中的富勒烯。

Fullerenes in an impact crater on the LDEF spacecraft.

作者信息

Radicati di Brozolo F, Bunch T E, Fleming R H, Macklin J

机构信息

Charles Evans and Associates, Redwood City, California 94063, USA.

出版信息

Nature. 1994 May 5;369:37-40. doi: 10.1038/369037a0.

Abstract

The fullerenes C60 and C70 have been found to occur naturally on Earth and have also been invoked to explain features in the absorption spectra of interstellar clouds. But no definitive spectroscopic evidence exists for fullerenes in space and attempts to find fullerenes in carbonaceous chondrites have been unsuccessful. Here we report the observation of fullerenes associated with carbonaceous impact residue in a crater on the Long Duration Exposure Facility (LDEF) spacecraft. Laser ionization mass spectrometry and Raman spectroscopy indicate the presence of fullerenes in the crater and in adjacent ejecta. Man-made fullerenes survive experimental hypervelocity (approximately 6.1 km s-1) impacts into aluminium targets, suggesting that space fullerenes contained in a carbonaceous micrometeorite could have survived the LDEF impact at velocities towards the lower end of the natural particle encounter range (<13 km s-1). We also demonstrate that the fullerenes were unlikely to have formed as instrumental artefacts, nor are they present as contaminants. Although we cannot specify the origin of the fullerenes with certainty, the most plausible source is the chondritic impactor. If, alternatively, the impact produced the fullerenes in situ on LDEF, then this suggests a viable mechanism for fullerene production in space.

摘要

已发现富勒烯C60和C70在地球上自然存在,并且也被用来解释星际云吸收光谱中的特征。但目前尚无确凿的光谱证据证明太空中存在富勒烯,而且在碳质球粒陨石中寻找富勒烯的尝试也未成功。在此,我们报告在长期暴露设施(LDEF)航天器的一个陨石坑中观察到与碳质撞击残留物相关的富勒烯。激光电离质谱和拉曼光谱表明陨石坑及相邻喷射物中存在富勒烯。人造富勒烯在模拟超高速(约6.1千米/秒)撞击铝靶的实验中能够幸存,这表明碳质微陨石中所含的太空富勒烯在LDEF以接近自然粒子碰撞速度范围下限(<13千米/秒)的速度撞击时可能幸存下来。我们还证明这些富勒烯不太可能是仪器假象形成的,也不是作为污染物存在。尽管我们无法确定富勒烯的来源,但最合理的来源是球粒陨石撞击体。另外,如果撞击在LDEF上原位产生了富勒烯,那么这表明太空中存在一种可行的富勒烯生成机制。

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