Funding will support the project team's small-scale research and development of novel reactor and catalyst technologies for the purpose of using cl…
Funding will support the project team's small-scale research and development of an additive friction surfacing (AFS) manufacturing process that wil…
Funding will support the project team's small-scale research and development of a lightweight and low-cost alloy foil to replace copper foil as a c…
This Second Amended Determination follows the approval of additional funding, period of performance, and new project milestones to support the project team's small-scale research and development activities to further advance their electric aviation engine and cooling system designed under the Aviation-class Synergistically Cooled Electric-motors with iNtegrated Drives (ASCEND) program.
This Second Amended Determination follows the approval of additional funding, period of performance, and new project milestones to support the project team's small-scale research and development activities to further advance their solution for effectively managing complex fluoride salt waste from reactors under the Optimizing Nuclear Waste and Advanced Reactor Disposal Systems (ONWARDS) program.
Funding will support the project team's small-scale research and development of a partial ionization plasma centrifuge technology to address tritium burn efficiency in fusion energy devices.
Funding will support the project team's small-scale research and development of a quantum computing system and algorithmic toolset to improve the efficiency of the energy grid and maximize cost-efficiency by coordinating generator sources to meet fluctuating energy demands.
Funding will support the project team's small-scale research and development of an ultrahigh-temperature stable plasma (USP) platform to produce hi…
This Fourth Amended Determination follows a change to field testing locations and project partners to support the project team's small-scale research and development activities to finalize, test, and validate their full-scale 160 kilowatt (kW) tidal turbine, currently in development under the Submarine Hydrokinetic and Riverine Kilo-Megawatt Systems (SHARKS) program.
This Amended Determination follows the approval of additional funding, period of performance, removal of teaming partners, and new project milestones to include the development of three additional Substation in a Cable for Adaptable, Low-cost Electrical Distribution (SCALED) alternating current (AC) to AC cells in addition to the development of four direct current (DC) to DC SCALED cells already in progress, with a goal to create a cohesive, all-in-one structure to replace bulky, inflexible power substations in the electrical grid.