APPLIED NANOTECH, INC. — Department of Energy SBIR Phase I: 26e
APPLIED NANOTECH, INC. — SBIR Phase I award from Department of Energy.
- Amount
- $154,986
- Agency
- Department of Energy
- Program / Phase
- SBIR · Phase I
- Topic
- 26e
- Solicitation
- DE-FOA-0001618
- NAICS
- —
- Place of performance
- TX
- Period
- 2017-02-21 → 2017-11-20
Description
For nuclear physics research, thin film isotopic specialty targets are often requested for the use and in charged-particle-induced experiments. There are also tens of radioisotopes that are of interest for medical imaging, industrial and R&D uses. The targets of interest include B, O, Si, and Cr; isotopes of refractory metals, such as Re, Os, Ir are good examples. However, many of the isotopes cannot be made as free-standing foils and require thin film backing. The limitations of existing backing materials are poor thermal and mechanical stability. All-carbon graphene-based films would be an excellent choice as a backing material due to its high thermal conductivity, high temperature tolerance, low outgassing, mechanical integrity and ease of handling. In addition, it would be possible to electroplate a thin layer of the target material or its precursor over the conducting graphene surface in case of limited availability of the isotope, or if the isotopic material cannot be deposited by sputtering or e-beam or thermal evaporation. For specialty targets, the target material can also be embedded in the graphene matrix during the backing film fabrication. In Phase I, we will fabricate thin graphene backing films with B-11, Cr, and Ir targets by different techniques: sputtering deposition, electroplating, and embedding in carbon matrix. The fabricated graphene backed targets along with free standing graphene films will be delivered to ANL for evaluation. Commercial Applications and Other Benefits The technology that will be developed in this effort may have additional commercial applications in the area of extraction foils for medical cyclotrons, filter membranes, transparent optical conductors, X-Ray and ion beam windows, and polymer nanocomposites for automotive, aerospace and defense applications.