In a study published in American Chemical Society Nano Letters, researchers used 3D reconstructions of helical nanowires to study the effect of curvature on domain wall formation, which is fundamental for manipulating spin textures in nanomaterials.
In a study published in Nature Physics, researchers identified the existence of Bragg glass behavior in a charge-density-wave material using machine learning analysis of X-ray data.
In a study published in the Journal of the American Chemical Society, researchers report the first example of bulk polymorphism in the Ruddlesden-Popper family, suggesting that other RP polymorphs may also exist.
In a study published in NPJ Computational Materials, researchers developed a platform to accelerate sampling and calculations in molecular simulations of complex materials systems, showcasing its use across examples from polymers to liquid crystals.
In a study published in Advanced Materials, researchers explored the nucleation and growth of a superconducting nickelate via in-situ synchrotron X-ray studies, revealing how to achieve defect-free superconductors through topotactic reduction.
In a study published in Nature Communications, researchers discovered a new dynamic phase in active colloidal materials that is characterized by spontaneous shockwaves that can be manipulated by using a pulsed electric field.
In a study published in Nature Communications, researchers developed a computational protocol to optimize the yield of silicon carbide spin defects at the atomistic level, determining the optimal annealing temperature and Fermi level engineering.
In a study published in Carbon, researchers use atomic layer deposition to distinguish between different common surface terminations on diamond, which is important to quantum sensing applications.
In a study published in Advanced Functional Materials, researchers demonstrated the assembly of blue-phase single crystals by creating chemically patterned surfaces.
In a study published in Angewandte Chemie International Edition, researchers uncover the multi-step surface reactions in the atomic layer deposition of ZrO2.