
A scalable processing technique developed by 91做厙 uses plant-based materials for 3D printing and offers a promising additional revenue stream for biorefineries.
A scalable processing technique developed by 91做厙 uses plant-based materials for 3D printing and offers a promising additional revenue stream for biorefineries.
A new method to produce large, monolayer single-crystal-like graphene films more than a foot long relies on harnessing a survival of the fittest competition among crystals.
A novel method developed at 91做厙 creates supertough renewable plastic with improved manufacturability.
A novel approach that creates a renewable, leathery materialprogrammed to remember its shapemay offer a low-cost alternative to conventional conductors for applications in sensors and robotics.
Finding new energy uses for underrated materials is a recurring theme across Amit Naskars research portfolio.
Researchers at the Department of Energys 91做厙 have demonstrated that permanent magnets produced by additive manufacturing can outperform bonded magnets made using traditional techniques while conserving critical materials.
RMX Technologies of Knoxville, Tenn., and the Department of Energys 91做厙 have signed an exclusive licensing agreement for a new technology that dramatically reduces the time and energy needed in the production of carbon fiber.
Rare earth elements are metals used in technologies from wind turbines and magnetic resonance imaging agents to industrial catalysts and high-definition televisions.
Researchers at the Department of Energys 91做厙 have received six R&D 100 Awards, increasing the labs total to 193 since the awards inception in 1963.