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What is X-Ray Diffraction (XRD) and What Applications is it Used in? - Vimarsana News

What is X-Ray Diffraction (XRD) and What Applications is it Used in?

X-ray diffraction (XRD) is a technique for analyzing the atomic or molecular structure of materials. Crystalline materials are the most analyzed type of material XRD but there are variations of the methodology that are suitable for other types of material such as powder X-ray diffraction.

Mapping Li-ion Battery Degradation with X-Ray Diffraction - Vimarsana News

Mapping Li-ion Battery Degradation with X-Ray Diffraction

A new study published in ACS Applied Energy Materials in 2021 demonstrates a viable methodology for analyzing Li-ion batteries with high-energy X-ray diffraction (HEXRD).

Using X-Ray Diffraction to Study the Crystal Growth of New Materials - Vimarsana News

Using X-Ray Diffraction to Study the Crystal Growth of New Materials

In this interview, Prof. Hanno zur Loye from the University of South Carolina, describes his research involving X-Ray Diffraction to investigate the crystal growth of new materials.

Source: azom.com
Global Atomic Spectroscopy Market (2021 to 2026) - by Application, Technology and Geography - Vimarsana News

Global Atomic Spectroscopy Market (2021 to 2026) - by Application, Technology and Geography

/PRNewswire/ -- The "Global Atomic Spectroscopy Market (2021-2026) by Application, Technology, Geography, Competitive Analysis and the Impact of Covid-19 with...

"Growth, characterization and theoretical optical properties of polycry" by Ali Zahid, Umer Zahid et al. - Vimarsana News

"Growth, characterization and theoretical optical properties of polycry" by Ali Zahid, Umer Zahid et al.

With the decline in fossil fuels, hydrogen-based alternatives provide a reliable and clean source for sustainable energy generation. In these endeavors, photochemical splitting for hydrogen production through tandem cells has been the source of much theoretical and experimental research in science. Much focus has been placed on interfacial band gap engineering as one of the most promising routes in the generation of hydrogen. This present work explores sputtering of n-silicon to form the active electrode in a n-Si | n-TiO2 tandem cell and investigates the effect of variations in sputtering and...

Source: uow.edu.au