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The environment significantly impacts molecular anions (MAs), altering their reactivity and stability. Solvation and intermolecular forces play crucial roles in MA behavior and existence.

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Area of Science:

  • Physical Chemistry
  • Chemical Physics
  • Theoretical Chemistry

Background:

  • Molecular anions (MAs) exhibit unique properties due to loosely bound, diffuse valence electrons.
  • Environmental interactions profoundly influence MA chemical reactivity and physical behavior.
  • Anions are particularly sensitive to their surroundings, with even weak forces causing significant effects.

Purpose of the Study:

  • To illustrate the environmental sensitivity of molecular anions.
  • To highlight how solvation and intermolecular interactions affect MA properties.
  • To provide diverse examples of MA environmental effects.

Main Methods:

  • This perspective reviews various theoretical and computational studies.
  • Illustrative examples are presented across different scenarios.
  • Analysis focuses on electron binding energies, stability, and spatial arrangements.

Main Results:

  • Solvation significantly alters electron binding energies of MAs.
  • Some MAs require solvent molecules for stability.
  • Multiply charged MAs can exhibit temporary stability via internal repulsions.
  • MA arrangement at interfaces and interactions with cations influence reactivity.
  • Internal energy can lead to electron detachment from MAs.

Conclusions:

  • The chemical and physical properties of MAs are highly dependent on their environment.
  • Intermolecular interactions, solvation, and spatial arrangement are critical factors.
  • Understanding these effects is crucial for predicting MA behavior in various systems.