This book highlights the latest advances and outlines future trends in aqueous solvation dynamics from the perspective of hydrogen bond transition by charge injection, which reconciles the solvation dynamics, molecular nonbond interactions, and the extraordinary functionalities of various solutes on the solution bond network and properties in terms of ionic and dipolar electrostatic polarization, O:H nonbond interaction, anti-HB and super-HB repulsion. Its target audience includes researchers, scientists, and engineers in chemistry, physics, surface and interface science, materials science and engineering.
This book highlights the latest advances and outlines future trends in aqueous solvation studies from the perspective of hydrogen bond transition by charge injection, which reconciles the solvation dynamics, molecular nonbond interactions, and the extraordinary functionalities of various solutes on the solution bond network and properties. Focus is given on ionic and dipolar electrostatic polarization, O:H nonbond interaction, anti-HB and super-HB repulsion, and solute-solute interactions. Its target audience includes researchers, scientists, and engineers in chemistry, physics, surface and interface science, materials science and engineering.
Highlights the latest advances and outlines future trends in aqueous solvation dynamics Reinforces the principles of charge injection for modulating the hydrogen-bond network and solution properties Provides quantitative information on molecular nonbond interactions and solute capabilities of O:H-O bond transition
Chang Q Sun
molecular nonbond interaction solvation dynamics solution bond network dipolar electrostatic polarization ionic electrostatic polarization oxygen-hydrogen nonbond attraction anti hydrogen bonding super hydrogen bonding repulsion differential phonon spectrometrics (DPS) bond-electron-phonon