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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Conical-Intersection Topographies Suggest That Ribose Exhibits Enhanced UV Photostability
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Conical-Intersection Topographies Suggest That Ribose Exhibits Enhanced UV Photostability

机译:圆锥形交叉点地形表明,核糖具有增强的紫外线光稳定性

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摘要

Carbohydrates are essential building blocks of life that assume a multitude of biological functions in all living organisms found on Earth. It was recently reported that ribose was identified in UV-irradiated interstellar ice analogs, which suggests that it can be found on comets and that it may have been transported to Earth via the impact of comets. Herein, we present computational results obtained with multiconfigurational ab initio quantum-chemical methods showing that various photochemical processes for radiationless deactivation are available for photoexcited ribose. These processes are driven by n sigma* states and involve either O-H- or endocyclic or exocyclic C-O-bond elongation whereby a conical intersection with the electronic ground state becomes accessible. The local topography of the potential-energy surfaces around these conical intersections suggests that these intersections mediate efficient radiationless deactivation and favor regeneration of the initially photoexcited ground-state reactant. These findings indicate that ribose found space can be expected to be highly photostable upon irradiation with UV starlight, which could be of relevance astrobiology.
机译:碳水化合物是生命的重要组成部分,在地球上发现的所有生物中都具有多种生物学功能。最近有报道说,核糖存在于紫外线辐射的星际冰类似物中,这表明它可以在彗星上发现,并且可能是通过彗星的撞击而被运送到地球的。在这里,我们介绍了从多配置从头开始的量子化学方法所获得的计算结果,这些结果表明,无辐射失活的各种光化学过程可用于光激发核糖。这些过程由n sigma *状态驱动,涉及O-H-或环内或环外C-O-键键伸长,从而可以与电子基态形成圆锥形相交。这些圆锥形交叉点周围的势能表面的局部形貌表明,这些交叉点可有效地进行无辐射钝化,并有利于初始光激发的基态反应物的再生。这些发现表明,核糖发现的空间在紫外线星光照射下有望高度光稳定,这可能与相关的天体生物学有关。

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