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February 22, 2026Chemical Communications0 citations

Dissociation of protic ethyl mercaptan cosolvent enables better magnesium electrochemistry reversibility

TLT. LiuQingdao University of Science and TechnologyWLWanyu LinQingdao University of Science and TechnologyLZLei ZhangQingdao University of Science and Technology

Key Points

  • The central aim is to explore how dissociating a protic ethyl mercaptan impacts magnesium electrochemistry.
  • Demonstrated the dissociation of protic ethyl mercaptan in conventional electrolytes.
  • Analyzed magnesium electrochemistry reversibility under various conditions.
  • Compared performance metrics with and without the protic cosolvent.
  • Improved reversibility of magnesium electrochemistry was observed with the dissociated cosolvent.
  • Enhanced charge-discharge efficiency was quantified.
  • Dissociation significantly altered electrolyte properties favorably.

Abstract

The dissociation of a protic ethyl mercaptan (EM) cosolvent has been firstly demonstrated as a fundamental causation to achieve the improved magnesium (Mg) electro-chemistry reversibility in conventional electrolytes. The strong...

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/699a9d50482488d673cd32c5https://doi.org/10.1039/d6cc00468g
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