Ab-initio Simulation

Ab-initio simulation is a computational approach that predicts molecular and material properties from fundamental quantum-mechanical principles rather than fitted experimental parameters, making it important for studying chemical systems at the electronic level. In chemistry, these simulations approximate solutions to the Schrödinger equation by representing electron behavior with basis sets and calculating electronic structure, often using methods such as Hartree–Fock, post-Hartree–Fock theory, or density functional theory. They can predict molecular geometries, energies, reaction pathways, spectra, and intermolecular interactions. By connecting atomic-scale structure to observable behavior, ab-initio methods support reaction analysis, catalyst design, materials development, and interpretation of experimental results.

Ab-initio Simulation - Related Videos

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JoVE Journal - Chemistry
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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).

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JoVE Journal - Chemistry
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Computation of Atmospheric Concentrations of Molecular Clusters from ab initio Thermochemistry

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Cited by 22 •

2020

The atmospheric concentrations of weakly bound molecular clusters can be computed from the thermochemical properties of low energy structures found through a multi-step configurational sampling methodology utilizing a genetic algorithm and semi-empirical and ab initio quantum chemistry.

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JoVE Journal - Immunology and Infection

Assessment of Immunologically Relevant Dynamic Tertiary Structural Features of the HIV-1 V3 Loop Crown R2 Sequence by ab initio Folding

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Cited by 10 •

2010

The crown region of different V3 loop sequences of the surface envelope glycoprotein (gp120) of HIV-1 can be structurally characterized in many cases by in silico folding of positions 10 to 22 of the loop using a state-of-the-art ab initio folding algorithm. Here we demonstrate the folding and evaluation of this region of the V3 loop from the R2 strain of HIV-1, a uniquely neutralization sensitive strain with puzzling functional properties.

Contrast-Matching Detergent in Small-Angle Neutron Scattering Experiments for Membrane Protein Structural Analysis and Ab Initio Modeling

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Cited by 2 •

2018

This protocol demonstrates how to obtain a low-resolution ab initio model and structural details of a detergent-solubilized membrane protein in solution using small-angle neutron scattering with contrast-matching of the detergent.

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JoVE Journal - Neuroscience
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MPI CyberMotion Simulator: Implementation of a Novel Motion Simulator to Investigate Multisensory Path Integration in Three Dimensions

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Cited by 48 •

2012

An efficient way to gain insight into how humans navigate themselves in three dimensions is described. The method takes advantage of a motion simulator capable of moving observers in ways unattainable by traditional simulators. Results confirm that movement in the horizontal plane is underestimated, while vertical movement is overestimated.

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