Leiden Institute of Chemistry, 2300 RA Leiden, The Netherlands.
Cold Spring Harb Perspect Biol. 2010 Dec;2(12):a002097. doi: 10.1101/cshperspect.a002097. Epub 2010 Jun 16.
Astronomical observations have shown that carbonaceous compounds in the gas and solid state, refractory and icy are ubiquitous in our and distant galaxies. Interstellar molecular clouds and circumstellar envelopes are factories of complex molecular synthesis. A surprisingly large number of molecules that are used in contemporary biochemistry on Earth are found in the interstellar medium, planetary atmospheres and surfaces, comets, asteroids and meteorites, and interplanetary dust particles. In this article we review the current knowledge of abundant organic material in different space environments and investigate the connection between presolar and solar system material, based on observations of interstellar dust and gas, cometary volatiles, simulation experiments, and the analysis of extraterrestrial matter. Current challenges in astrochemistry are discussed and future research directions are proposed.
天文学观测表明,气态和固态的碳质化合物、难熔物质和冰在我们的星系和遥远的星系中无处不在。星际分子云(interstellar molecular clouds)和星周包层(circumstellar envelopes)是复杂分子合成的工厂。在星际介质(interstellar medium)、行星大气和表面(planetary atmospheres and surfaces)、彗星(comets)、小行星(asteroids)和陨石(meteorites)以及行星际尘埃颗粒(interplanetary dust particles)中,发现了数量惊人的在当代地球生物化学中使用的分子。在本文中,我们综述了不同空间环境中丰富的有机物质的现有知识,并基于对星际尘埃和气体、彗星挥发物(cometary volatiles)、模拟实验和对天外物质的分析,研究了太阳前物质和太阳系物质之间的联系。讨论了当前天体化学面临的挑战,并提出了未来的研究方向。