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      Electron spin and the origin of Bio-homochirality II. Prebiotic inorganic-organic reaction model

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          Abstract

          The emergence of biomolecular homochirality is a critically important question about life phenomenon and the origins of life. In a previous paper (arXiv:1309.1229), I tentatively put forward a new hypothesis that the emergence of a single chiral form of biomolecules in living organisms is specifically determined by the electron spin state during their enzyme-catalyzed synthesis processes. However, how a homochirality world of biomolecules could have formed in the absence of enzymatic networks before the origins of life remains unanswered. Here I discussed the electron spin properties in Fe3S4, ZnS, and transition metal doped dilute magnetic ZnS, and their possible roles in the prebiotic synthesis of chiral molecules. Since the existence of these minerals in hydrothermal vent systems is matter of fact, the suggested prebiotic inorganic-organic reaction model, if can be experimentally demonstrated, may help explain where and how life originated on early Earth.

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          Journal
          23 October 2014
          2015-04-02
          Article
          1410.6555
          e2413d4c-2849-4a9b-a38d-f1b08f5fa42c

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          2 figures
          physics.bio-ph

          Biophysics
          Biophysics

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