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On the Potential of Silicon as a Building Block for Life

机译:关于硅作为生命构建基石的潜力

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摘要

Despite more than one hundred years of work on organosilicon chemistry, the basis for the plausibility of silicon-based life has never been systematically addressed nor objectively reviewed. We provide a comprehensive assessment of the possibility of silicon-based biochemistry, based on a review of what is known and what has been modeled, even including speculative work. We assess whether or not silicon chemistry meets the requirements for chemical diversity and reactivity as compared to carbon. To expand the possibility of plausible silicon biochemistry, we explore silicon’s chemical complexity in diverse solvents found in planetary environments, including water, cryosolvents, and sulfuric acid. In no environment is a life based primarily around silicon chemistry a plausible option. We find that in a water-rich environment silicon’s chemical capacity is highly limited due to ubiquitous silica formation; silicon can likely only be used as a rare and specialized heteroatom. Cryosolvents (e.g., liquid N ) provide extremely low solubility of all molecules, including organosilicons. Sulfuric acid, surprisingly, appears to be able to support a much larger diversity of organosilicon chemistry than water.
机译:尽管在有机硅化学上进行了一百多年的工作,但对于基于硅的生命的合理性基础从未进行过系统地探讨或客观地审查过。我们基于对已知和建模内容(包括投机工作)的回顾,对基于硅的生物化学的可能性进行了全面评估。我们评估与碳相比,硅化学是否满足化学多样性和反应性的要求。为了扩大可行的硅生物化学的可能性,我们探索了在行星环境中发现的各种溶剂(包括水,低温溶剂和硫酸)中硅的化学复杂性。在任何环境下,以硅化学为基础的生命都是可行的选择。我们发现,在水丰富的环境中,硅的化学能力由于二氧化硅的普遍存在而受到极大限制。硅可能只能用作稀有且专门的杂原子。低温溶剂(例如液态N)对包括有机硅在内的所有分子的溶解度极低。令人惊讶的是,硫酸似乎能够支持比水更大得多的有机硅化学多样性。

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