The research team has developed a cost-effective and high-throughput method to fabricate the graphene moiré metasurface.

The research team has developed a cost-effective and high-throughput method to fabricate the graphene moiré metasurface.
A report from the META 2016 conference, held from 25 to 28 July in Torremolinos, Spain.
Researchers from Florida State University have used a two-pronged approach to achieve rapid synthesis of these metal-organic perovskite-like multiferroics.
Anisotropic conductive films can be produced by shear flow that induces the self-assembly of conductive fillers (like carbon nanotubes, graphene or inexpensive carbon black) into parallel stripes in a polymer matrix.
Nanogels were developed as magnetic capturing devices for circulating tumor cells and applied in the magnetic separation of human cancer cells from a mixed cell suspension.
UC Santa Barbara researchers Prasad Iyer and Prof. Jon Schuller propose a new route, novel electrically reconfigurable metasurfaces, as an important step towards on-chip programmable optics.
Sheng Liu, Igal Brener, Mike Sinclair and other co-workers from Sandia National Laboratories demonstrated both two-dimensional and multilayer (3D) dielectric metamaterials made from III-V semiconductors (elements from groups III and V on the periodic table) using a monolithic fabrication process.
Researchers distinguish the origin and energetics of spectral features supported in nanoparticle-TMD monolayer hybrids.
The Mazzeo Research Group has designed soft motors by combining pneumatically-driven elastomeric structures with peristaltic motion.
The Journal of Polymer Science Part B: Polymer Physics has published a special issue on shape-memory polymers.