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June 4, 2026Russian Journal of Physical Chemistry B0 citations

Physical Reasons for Overcoming the Chiral Catastrophe Paradox

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АСА. А. СкоблинDZD. V. ZlenkoMMM. G. Mikhaleva

Key Points

  • This research aims to resolve the chiral catastrophe, where formation of homochiral polymers contradicts theoretical energy limitations.
  • Theoretical analysis of chiral-induced spin selectivity effects on molecular interactions.
  • Evaluation of exchange interactions between chiral molecules without specialized enzymes.
  • Examination of thermodynamic properties of homochiral chain formation.
  • Chiral-induced spin selectivity leads to exchange interaction strength up to 100 kJ/mol.
  • Formation of homochiral chains possible even in racemic mixtures under specific conditions.
  • Thermodynamic models support previously theoretical predictions of polymer formation.

Abstract

In 1996, Avetisov and Goldanskii demonstrated that the formation of homochiral polymers from racemic mixtures of enantiomers is possible if the difference in binding energy between like and opposite enantiomers is at least 6–8 kT (15–20 kJ/mol). However, theoretical estimates indicate that this energy cannot exceed kT. At the same time, similar processes are observed experimentally and should have taken place at the dawn of life on Earth. This contradiction has been called the “chiral catastrophe” and remains unresolved to this day. In this paper, we theoretically demonstrate the fundamental possibility of overcoming chiral catastrophe through the effect of chiral-induced spin selectivity, which provides a sufficiently strong (up to 100 kJ/mol) exchange interaction between chiral molecules. This allows us to describe the thermodynamics of the formation of homochiral chains of molecules in a medium with any degree of chiral polarization in the absence of specialized enzymes, which was previously theoretically considered a physical paradox.

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Cite This Study

Скоблин et al. (2026) studied this question.

synapsesocial.com/papers/6a211689d499ed480b16f6fehttps://doi.org/10.1134/s1990793126700144
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