Ultrafast Molecular Dynamics

Ultrafast molecular dynamics examines how molecules change their structures and electronic states on femtosecond-to-picosecond timescales, revealing chemical events that conventional measurements cannot resolve. In a typical pump-probe experiment, an ultrashort laser pulse excites a molecule, while delayed probe pulses track transient absorption or emission as energy redistributes, bonds reorganize, or excited states undergo nonradiative decay. Researchers combine these measurements with computational simulations to connect spectroscopic signals to atomic motion and reaction pathways. The approach clarifies photochemical reactions, electron and proton transfer, energy flow, and bond breaking, supporting advances in catalysis, solar-energy conversion, materials chemistry, and molecular photophysics.

Ultrafast Molecular Dynamics - Related Videos

Research

JoVE Journal - Chemistry

Direct Imaging of Laser-driven Ultrafast Molecular Rotation

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Cited by 5 •

2017

We present a protocol for creating a real-time movie of a molecular rotational wave packet using a high-resolution Coulomb explosion imaging setup.

Probing C84-embedded Si Substrate Using Scanning Probe Microscopy and Molecular Dynamics

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Cited by 1 •

2016

This paper reports the nanomaterial fabrication of a fullerene Si substrate inspected and verified by nanomeasurements and molecular dynamic simulation.

Spatial Separation of Molecular Conformers and Clusters

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Cited by 3 •

2014

We present a technique that allows the spatial separation of different conformers or clusters present in a molecular beam. An electrostatic deflector is used to separate species by their mass-to-dipole moment ratio, leading to the production of gas-phase ensembles of a single conformer or cluster stoichiometry.

Research

JoVE Journal - Chemistry
Free Sample

Analyzing Melts and Fluids from Ab Initio Molecular Dynamics Simulations with the UMD Package

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Cited by 2 •

2021

Melts and fluids are ubiquitous vectors of mass transport in natural systems. We have developed an open-source package to analyze ab initio molecular-dynamics simulations of such systems. We compute structural (bonding, clusterization, chemical speciation), transport (diffusion, viscosity) and thermodynamic properties (vibrational spectrum).

Blood Flow Imaging with Ultrafast Doppler

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Cited by 10 •

2020

This protocol shows how to apply ultrafast ultrasound Doppler imaging to quantify blood flows. After a 1 s long acquisition, the experimenter has access to a movie of the full field of view with axial velocity values for each pixel every ≈0.3 ms (depending on the ultrasound time of flight).

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