首页> 外文期刊>Astrobiology >The Organism/Organic Exposure to Orbital Stresses (O/OREOS) Satellite: Radiation Exposure in Low-Earth Orbit and Supporting Laboratory Studies of Iron Tetraphenylporphyrin Chloride
【24h】

The Organism/Organic Exposure to Orbital Stresses (O/OREOS) Satellite: Radiation Exposure in Low-Earth Orbit and Supporting Laboratory Studies of Iron Tetraphenylporphyrin Chloride

机译:有机/有机暴露于轨道应力(O / OREOS)卫星:低地球轨道的辐射暴露及四氯化铁四苯基卟啉铁的辅助实验室研究

获取原文
获取原文并翻译 | 示例
           

摘要

We report results from the exposure of the metalloporphyrin iron tetraphenylporphyrin chloride (FeTPPCl) to the outer space environment, measured in situ aboard the Organism/Organic Exposure to Orbital Stresses nanosatellite. FeTPPCl was exposed for a period of 17 months (3700 h of direct solar exposure), which included broad-spectrum solar radiation (~122 nm to the near infrared). Motivated by the potential role of metallo-porphyrins as molecular biomarkers, the exposure of thin-film samples of FeTPPCl to the space environment in low-Earth orbit was monitored in situ via ultraviolet/visible spectroscopy and reported telemetrically. The space data were complemented by laboratory exposure experiments that used a high-fidelity solar simulator covering the spectral range of the spaceflight measurements. We found that thin-film samples of FeTPPCl that were in contact with a humid headspace gas (0.8-2.3% relative humidity) were particularly susceptible to destruction upon irradiation, degrading up to 10 times faster than identical thin films in contact with dry headspace gases; this degradation may also be related to the presence of oxides of nitrogen in those cells. In the companion terrestrial experiments, simulated solar exposure of FeTPPCl films in contact with either Ar or CO_2:O_2:Ar (10:0.01:1000) headspace gas resulted in growth of a band in the films' infrared spectra at 1961 cm~(-1). We concluded that the most likely carriers of this band are allene (C_3H_4) and chloropropadiene (C_3H_3Cl), putative molecular fragments of the destruction of the porphyrin ring. The thin films studied in space and in solar simulator-based experiments show qualitatively similar spectral evolution as a function of contacting gaseous species but display significant differences in the time dependence of those changes. The relevance of our findings to planetary science, biomarker research, and the photostability of organic materials in astro-biologically relevant environments is discussed.
机译:我们报告了金属卟啉四氯化四铁卟啉氯化铁(FeTPPCl)暴露于外太空环境的结果,该结果是在有机/有机暴露于轨道应力的纳米卫星上原位测量的。 FeTPPC1暴露了17个月(直接暴露于太阳下3700小时),其中包括广谱太阳辐射(近红外波长约122 nm)。受金属卟啉作为分子生物标记物的潜在作用的推动,FeTPPC1薄膜样品在近地轨道空间环境中的暴露通过紫外/可见光谱法进行了监测,并进行了遥测。空间数据得到实验室暴露实验的补充,该实验使用了高保真太阳模拟器,覆盖了航天测量的光谱范围。我们发现与潮湿的顶空气体(相对湿度为0.8-2.3%)接触的FeTPPCl薄膜样品特别容易受到辐射的破坏,其降解速度比与干燥的顶空气体接触的相同薄膜快10倍。 ;这种降解也可能与这些电池中氮氧化物的存在有关。在伴随的地面实验中,FeTPPCl薄膜与Ar或CO_2:O_2:Ar(10:0.01:1000)顶空气体接触的模拟太阳光照射导致薄膜在1961 cm〜(- 1)。我们得出的结论是,该谱带最可能的载体是丙二烯(C_3H_4)和氯丙二烯(C_3H_3Cl),这是卟啉环破坏的推测分子片段。在太空中和在基于太阳模拟器的实验中研究的薄膜显示出质的相似的光谱演化是接触气态物质的函数,但在这些变化的时间依赖性上显示出显着差异。讨论了我们的发现与行星科学,生物标记研究以及天体生物相关环境中有机材料的光稳定性的相关性。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号