Emergence of Debye scaling in the density of states of liquids under nanoconfinement
arXiv:2307.11429 · doi:10.1021/acsnano.4c04729
Abstract
In the realm of nanoscience, the dynamic behaviors of liquids at scales beyond the conventional structural relaxation time, , unfold a fascinating blend of solid-like characteristics, including the propagation of collective shear waves and the emergence of elasticity. However, in classical bulk liquids, where is typically of the order of 1 ps or less, this solid-like behavior remains elusive in the low-frequency region of the density of states (DOS). Here, we provide evidence for the emergent solid-like nature of liquids at short distances through inelastic neutron scattering measurements of the low-frequency DOS in liquid water and glycerol confined within graphene oxide membranes. In particular, upon increasing the strength of confinement, we observe a transition from a liquid-like DOS (linear in the frequency ) to a solid-like behavior (Debye law, ) in the range of - meV. Molecular dynamics simulations confirm these findings and reveal additional solid-like features, including propagating collective shear waves and a reduction in the self-diffusion constant. Finally, we show that the onset of solid-like dynamics is pushed towards low frequency along with the slowing-down of the relaxation processes upon confinement. This nanoconfinement-induced transition, aligning with k-gap theory, underscores the potential of leveraging liquid nanoconfinement in advancing nanoscale science and technology, building more connections between fluid dynamics and materials engineering.
v3: matching the published version in ACS Nano
References in corpus (13)
- Mantid - Data Analysis and Visualization Package for Neutron Scattering and Experiments
- Emergence and evolution of -gap in spectra of liquid and supercritical states
- Nonlinear viscoelastic dynamics of nano-confined water
- Water under extreme confinement in graphene: Oscillatory dynamics, structure, and hydration pressure explained as a function of the confinement width
- Explaining the low-frequency shear elasticity of confined liquids
- Onset of transverse (shear) waves in strongly-coupled Yukawa fluids
- Collective modes and gapped momentum states in liquid Ga: experiment, theory and simulation
- Experimental Confirmation of the Universal Law for the Vibrational Density of States of Liquids
- The scaling of the vibrational density of states in quasi-2D nanoconfined solids
- How small hydrodynamics can go
- Unexpected thermo-elastic effects in liquid glycerol by mechanical deformation
- Onset of two collective excitations in the transverse dynamics of a simple fluid
- Dispersion of acoustic excitations in tetrahedral liquids