Materials Studio is software for simulating and modeling materials. It is developed and distributed by BIOVIA (formerly Accelrys), a firm specializing in research software for computational chemistry, bioinformatics, cheminformatics, molecular dynamics simulation, and quantum mechanics.[3]
This software is used in advanced research of various materials, such as polymers, carbon nanotubes, catalysts, metals, ceramics, and so on, by universities (e.g., North Dakota State University[4]), research centers, and high tech companies.
Dear all,
thanks for your very helpful advises.
But, my question is not solved yet.
What I would like to do is to see the charge distribution on Material
studio.
If I make output file of atom's position and charge, how could I convert
that file to use in material studio ?
Accelrys, a provider of scientific lifecycle management solutions, has announced the release of the Accelrys Materials Studio 7.0, a modelling and simulation environment for chemists, polymer scientists and other materials scientists.
The software enables scientists to simulate materials across a wide range of applications including pharmaceuticals, catalysts, polymers, composites, metals, alloys, batteries, fuel cells and more. The latest release contains enhancements in quantum mechanics, classical simulation, usability, visualisation and collaboration.
Accelrys Materials Studio enables scientists to perform highly complex materials research using multi-scale simulation methods to construct, manipulate and view models of molecules, crystalline materials, surfaces, polymers and mesoscale structures.
Also by understanding and predicting the relationships between a material's atomic and molecular structure, its properties and behaviors, materials scientists can develop better performing materials of all types.
High-performance 3D FDTD-method (Finite-Difference Time-Domain) Maxwell solver for the design, analysis, and optimization of nanophotonic devices, processes, and materials. 3D CAD environment and parameterizable simulation objects, multi-coefficient models for accurate material modeling over large wavelength ranges, non-linear materials and spatially variable anisotropy, powerful post-processing capability, including far-field projections, band structure analysis, BSDF generation, Q-factor analysis and charge generation rate, extensive geometry import options, and scripting. The advanced conformal mesh gives high accuracy, even with coarse meshes. Bend loss, confinement factor, and modal area analysis. Simulate large planar waveguides with the accuracy of 3D. Simulate optical components using optical, electrical, and thermal multiphysics.
We're obsessed with interesting materials. We source and supply beautiful surfaces from around the world. We're not just a shop, when we find suppliers we really love, we bring them into the fold and put the surfaces to work. You can find our surfaces in our studio furniture, kitchen, storage, plinths and wall panels to show how materials age and perform over time. We have samples in a range of colours and sizes in different stages of production, including raw materials that show how surfaces are made.
We help designers and architects use materials to their full potential, so ideas can become the best builds they can be. Our space is a place where designers, architects and makers can get inspired and talk about projects. We can help you choose a material with every phase of a project in mind - from the design stages and fit-out to the rip out and beyond. It's about taking the right steps that'll make reuse and recycling easier for whoever wants your materials next.
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