Maciá Enrique
Departamento de Física de Materiales, Facultad CC. Físicas, Universidad Complutense de Madrid, E-28040, Madrid, Spain.
Chem Soc Rev. 2005 Aug;34(8):691-701. doi: 10.1039/b416855k. Epub 2005 Apr 28.
In this tutorial review we consider the role of phosphorus and its compounds within the context of chemical evolution in galaxies. Following an interdisciplinary approach we first discuss the position of P among the main biogenic elements by considering its relevance in most essential biochemical functions as well as its peculiar chemistry under different physicochemical conditions. Then we review the phosphorus distribution in different cosmic sites, such as terrestrial planets, interplanetary dust particles, cometary dust, planetary atmospheres and the interstellar medium (ISM). In this way we realize that this element is both scarce and ubiquitous in the universe. These features can be related to the complex nucleosynthesis of P nuclide in the cores of massive stars under explosive conditions favouring a wide distribution of this element through the ISM, where it would be ready to react with other available atoms. A general tendency towards more oxidized phosphorus compounds is clearly appreciated as chemical evolution proceeds from circumstellar and ISM materials to protoplanetary and planetary condensed matter phases. To conclude we discuss some possible routes allowing for the incorporation of phosphorus compounds of prebiotic interest during the earlier stages of solar system formation.
在本教程综述中,我们探讨了磷及其化合物在星系化学演化背景下的作用。采用跨学科方法,我们首先通过考虑磷在最基本生化功能中的相关性及其在不同物理化学条件下的特殊化学性质,来讨论磷在主要生物成因元素中的地位。然后,我们回顾了磷在不同宇宙场所的分布情况,如类地行星、行星际尘埃颗粒、彗星尘埃、行星大气层和星际介质(ISM)。通过这种方式,我们认识到这种元素在宇宙中既稀缺又普遍存在。这些特征可能与大质量恒星核心中磷核素在爆炸条件下的复杂核合成有关,这种条件有利于该元素通过星际介质广泛分布,在那里它随时准备与其他可利用的原子发生反应。随着化学演化从恒星周围和星际介质物质发展到原行星和行星凝聚相,磷化合物的氧化程度明显呈现出增加的总体趋势。最后,我们讨论了在太阳系形成早期阶段,一些可能使具有益生元意义的磷化合物得以纳入的途径。