Tuesday, May 16, 2017
Scientists develop real-time technique for studying ionic liquids at electrode interfaces
Determining how the ions of the liquid move and rearrange in response to an applied voltage on electrodes is key to optimizing the performance of ionic liquids for energy storage devices.
Managing stress helps transistor performance
Using tensile stress via a contact etching stop layer (CESL) to improve frequency performance.
Engaging diamond for next-era transistors
Materials scientists have developed a new diamond transistor fabrication process that promises to advance the development of more robust and energy-efficient electronics.
A superior near-infrared organic light emitting diode
Researchers have shown record external quantum efficiencies for diodes based on organic red/NIR oligomers free from heavy/toxic metals and combining electron-withdrawing (A) moieties together with electron-donating (D) ones, in a previously poorly studied A-D-A motif.
Evidence of topological excitations in a quantum magnet
Researchers advance our understanding of condensed matter systems by showing that such topological states can arise in a completely new setting.
Oddball enzyme provides easy path to synthetic biomaterials
Materials scientists have written the recipe on how to use an oddball enzyme to build new biomaterials out of DNA. The work provides instructions for researchers the world over to build self-assembling molecules for applications ranging from drug delivery to nanowires.
Energy decay in graphene resonators
A study reveals a new way of energy dissipation in graphene nano-resonators.
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