University of Notre Dame
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- Abstract:
Understanding the growth dynamics of the microbubbles produced by plasmonic heating can benefit a wide range of applications like microfluidics, catalysis, micro-patterning and photo-thermal energy conversion. Usually, surface plasmonic bubbles are generated on plasmonic structures pre-deposited on the surface subject to laser heating. In this work, we investigate the growth dynamics of surface microbubbles generated in plasmonic nanoparticle (NP) suspension. We observe much faster bubble gro…
- Date Created:
- 2020-04-08
- Record Visibility:
- Public
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- Author(s):
- Corinne Dorais
- Abstract:
Nuclear forensic analysis is a key component of United States national nuclear security. A strong nuclear forensic analytical capability strengthens both national and global security by providing a deterrent to bad actors and rogue states who seek to engage in nuclear terrorism or warfare. In order to be effective, nuclear forensic scientists must be able to rapidly achieve highly-accurate and -precise physical, chemical, and isotopic measurements of illicit nuclear materials. The work presen…
- Date Created:
- 2020-01-09
- Record Visibility:
- Public
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- Author(s):
- William Philllip, Siyi Qu, Sherwood Benavides, Peng Gao, Feng Gao
- Abstract:
A method for fabricating nanostructured polymeric materials based on a combination of inkjet printing and template synthesis. Layer-by-layer assembled nanotubes can be synthesized in a polycarbonate track-etched (PCTE) membrane by printing poly(allylamine hydrochloride) (PAH) and poly(styrenesulfonate) (PSS) sequentially. By changing the printing conditions, polymeric nanotubes or nanowires can be prepared by printing poly(vinyl alcohol) (PVA) in a PCTE template. Inkjet printing paired with t…
- Date Created:
- 2019-08-20
- Record Visibility:
- Public