An official website of the United States government
Here’s how you know
Official websites use .gov
A .gov website belongs to an official government organization in the United States.
Secure .gov websites use HTTPS
A lock (
) or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites.
Crystal Plasticity Modeling calculates multiaxial mechanical constitutive behavior by treating the sample as an interacting aggregate of single crystals that
The development of a materials innovation infrastructure (MII) that will enable rapid and significant reductions in the development time for new materials with
One of the major goals of the Materials Genome Initiative (MGI) is to facilitate the exchange of materials data to speed material discovery and development. The
Nano and atomic scale theory of the electronic, optical and mechanical properties of ultrasmall structures, such as semiconductor quantum dots and dopants in Si
Straw detectors are a new concept in position-sensitive neutron detectors recently developed by Proportion Technology Inc. The detectors are especially valuable
We are investigating non-contact methods for high volume, high throughput, and high transfer/transport efficiency screening and documenting appropriate testing
Reproducibility and reuse play fundamental roles in the development of science. With the growth of computational power and tools, simulated experiments have
Our objective is the development of Standard Reference Materials (SRMs) and quantitative, reproducible, and accurate measurement methods for characterization of
Directed Self Assembly (DSA) is one of the leading candidates for next generation lithography for the semiconductor and data storage industries. DSA combines
This project provides property data, new metrology and contributes to standard test method development for materials systems subject to extreme mechanical and
In classical molecular simulations, electrostatic contributions to the potential energy are typically accounted for by assigning partial charges to some or all
In this project we are developing in situ measurements relevant to the electrochemical fabrication, processing, and application of nanostructured materials and
To provide the necessary information for electronic material manufacturers to predict how and when failures will occur and enable lifetime analysis appropriate
Electronic structure information obtained with photoemission-based measurements provides a keystone in understanding emerging quantum materials, and the unique
The goal of the project is to develop measurement methods to characterize the nanoscale structure and dynamics of polymer electrolyte membranes (PEMs) to enable
Infrastructure is essential for commerce. Planners and stakeholders want to develop infrastructure that is resilient to both chronic (e.g., material degradation
This project comprises of two complimentary components: 1.) the controlled synthesis of selectively engineered magnetic nanoparticles (MNPs) in support of the
NIST is engaged in a joint effort between the Material Measurement Laboratory (MML) and the Physical Measurement Laboratory (PML) aimed at revolutionizing 3D
Magnetic tunnel junctions, nanostructured by highly charged ions, are being probed and characterized to establish the foundation for novel magnetic random
With increasing use of data-driven methodologies, concerns around data discovery, data access, and data interoperability have come to the forefront. Communities
Our objective is to evaluate mechanisms of fatigue in bulk silicon, a material that has been traditionally considered to be immune to degradation of mechanical
FiPy is an open software framework, designed to facilitate sharing of simulation codes for microstructural evolution in support of the Materials Genome
This project is focused on developing the measurement methods and polymer physics models needed to accelerate the innovation cycle for organic semiconductor