Orbital occupancy and spin polarization: from mechanistic study to rational design of transition metal-based electrocatalysts toward energy applications
VH Do, JM Lee - ACS nano, 2022 - ACS Publications
Over the past few decades, development of electrocatalysts for energy applications has
extensively transitioned from trial-and-error methodologies to more rational and directed …
extensively transitioned from trial-and-error methodologies to more rational and directed …
Ferroelectric domain walls for nanotechnology
D Meier, SM Selbach - Nature Reviews Materials, 2022 - nature.com
Ferroelectric domain walls have emerged as a new type of interface in which the dynamic
characteristics of ferroelectricity introduce the element of spatial mobility, allowing real-time …
characteristics of ferroelectricity introduce the element of spatial mobility, allowing real-time …
Domain-wall engineering and topological defects in ferroelectric and ferroelastic materials
Ferroelectric and ferroelastic domain walls are 2D topological defects with thicknesses
approaching the unit cell level. When this spatial confinement is combined with observations …
approaching the unit cell level. When this spatial confinement is combined with observations …
Enhancing electrocatalytic water splitting by strain engineering
Electrochemical water splitting driven by sustainable energy such as solar, wind, and tide is
attracting ever‐increasing attention for sustainable production of clean hydrogen fuel from …
attracting ever‐increasing attention for sustainable production of clean hydrogen fuel from …
The evolution of multiferroics
Materials with a coexistence of magnetic and ferroelectric order—multiferroics—provide an
efficient route for the control of magnetism by electric fields. The study of multiferroics dates …
efficient route for the control of magnetism by electric fields. The study of multiferroics dates …
Recent progress in voltage control of magnetism: Materials, mechanisms, and performance
Voltage control of magnetism (VCM) is attracting increasing interest and exciting significant
research activity driven by its profound physics and enormous potential for application. This …
research activity driven by its profound physics and enormous potential for application. This …
Multiferroic materials and magnetoelectric physics: symmetry, entanglement, excitation, and topology
Multiferroics are those materials with more than one ferroic order, and magnetoelectricity
refers to the mutual coupling between magnetism (spins and/or magnetic field) and …
refers to the mutual coupling between magnetism (spins and/or magnetic field) and …
The 2016 oxide electronic materials and oxide interfaces roadmap
Oxide electronic materials provide a plethora of possible applications and offer ample
opportunity for scientists to probe into some of the exciting and intriguing phenomena …
opportunity for scientists to probe into some of the exciting and intriguing phenomena …
Defects in complex oxide thin films for electronics and energy applications: challenges and opportunities
Complex transition-metal oxides (TMOs) are critical materials for cutting-edge electronics
and energy-related technologies, on the basis of their intriguing properties including …
and energy-related technologies, on the basis of their intriguing properties including …
Emerging tellurium nanostructures: controllable synthesis and their applications
Tellurium (Te) is a rare element in trace amounts of about one part per billion, comparable to
that of platinum and ranked 75th in the abundance of the elements in the earth crust. Te …
that of platinum and ranked 75th in the abundance of the elements in the earth crust. Te …