Suppr超能文献

拉曼光谱法研究甘氨酸镁五水合物在模拟火星条件下的稳定性。

Study of the Stability of Gly·MgSO·5HO under Simulated Martian Conditions by Raman Spectroscopy.

机构信息

Centro de Astrobiología (CSIC-INTA), Madrid, Spain.

出版信息

Astrobiology. 2022 Jan;22(1):75-86. doi: 10.1089/ast.2021.0048. Epub 2021 Dec 7.

Abstract

Identification of spectroscopic fingerprints that correspond to relevant molecules/minerals in a Mars-like environment is a crucial search in astrobiology. Therefore, we studied the stability of Gly·MgSO·5HO under Mars-like surface conditions and compared it to the behavior of epsomite and glycine. Gly·MgSO·5HO has been identified as a molecule of astrobiological interest since an amino acid and water molecules, which are essential for life, are part of its structure. Furthermore, this compound may form by the interaction of sulfate minerals with glycine-bearing aqueous solutions, and both could be present on Mars. The main analyses were performed by using Raman spectroscopy, a ground-breaking technique for NASA and ESA Mars planetary missions. We have integrated a Raman spectrometer in a Planetary Atmosphere and Surfaces Chamber (PASC) and have identified the processing of molecules exposed to a simulated martian atmosphere, UV irradiation, and temperature. Our results show that pressure is critical to provoke amorphization of Gly·MgSO·5HO, and the release of glycine from the compound; the stabilization effect at low temperature and stability of Gly·MgSO·5HO is greater than to glycine and epsomite. The strategy employed here allows us to evaluate the effect of diverse simulated martian environmental conditions on molecular preservation by using Raman spectroscopy.

摘要

在火星环境中识别与相关分子/矿物质相对应的光谱指纹是天体生物学中的一个关键研究方向。因此,我们研究了甘氨酸·硫酸镁·5 水合物在类似火星表面条件下的稳定性,并将其与泻利盐和甘氨酸的行为进行了比较。甘氨酸·硫酸镁·5 水合物已被确定为天体生物学感兴趣的分子,因为其结构中包含氨基酸和水分子,这是生命所必需的。此外,这种化合物可能是由硫酸盐矿物与含有甘氨酸的水溶液相互作用形成的,而这两种物质都可能存在于火星上。主要分析是通过使用拉曼光谱技术完成的,这是 NASA 和 ESA 火星行星任务的一项突破性技术。我们已经将拉曼光谱仪集成到行星大气和表面室(PASC)中,并确定了暴露于模拟火星大气、紫外线辐射和温度下的分子的处理过程。我们的结果表明,压力对于引发甘氨酸·硫酸镁·5 水合物的非晶化和甘氨酸从化合物中的释放至关重要;低温下的稳定作用以及甘氨酸·硫酸镁·5 水合物的稳定性大于甘氨酸和泻利盐。这里采用的策略允许我们通过拉曼光谱评估各种模拟火星环境条件对分子保存的影响。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验