Nanostructuring improves optical confinement and limited light out-coupling efficiency from by the mismatched refractive indices of media in devices.

Nanostructuring improves optical confinement and limited light out-coupling efficiency from by the mismatched refractive indices of media in devices.
Graphene-treated nanowires could soon replace current touchscreen technology, reducing production costs and allowing for more affordable, flexible displays.
Takao Someya talks about his new role as an Advanced Electronics Materials Editorial Board member, his research priorities, and future applications of flexible electronics.
We talk to Sang-Woo Kim on his appointment to the Executive Advisory Board for Advanced Electronic Materials.
A Korean group enhance the sensitivity of pressure-sensitive rubber by introducing reverse-micelle-induced pores into conventional PSRs.
Researchers in Singapore have developed method to fabricate stretchable graphene nanopaper for use in strain detectors.
What materials discoveries had an impact on business the past 10 years? How will we do materials science startups in the future? Jeff Carbeck explains.
Korean researchers develop a new process for rendering paper and textile fibers conductive with aluminum.
A transparent and stretchable electrode could open the new way for flexible displays, solar cells, and electronic devices fitted on a curvature substrate.
Polymer film developed in Langer lab could be used in artificial muscle and to power micro- and nanoelectronic devices.