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You searched on: Topic Area: Nanofabrication, Nanomanufacturing, and Nanoprocessing Sorted by: title

Displaying records 41 to 47.
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41. Strong Casimir force reduction by metallic surface nanostructuring
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 9/27/2013
Authors: Francesco Intravaia, Stefan T. Koev, Il Woong Jung, Albert A. Talin, Paul S Davids, Ricardo Decca, Vladimir A Aksyuk, Diego A. R. Dalvit, Daniel Lopez
Abstract: The Casimir force is a quantum-mechanical interaction arising from vacuum fluctuations of the electromagnetic (EM) field and is technologically significant in micro- and nanomechanical systems. Despite rapid progress in nanophotonics, the goal of e ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910133

42. Structural and Electrical Characterization of Flip Chip Laminated omega-functionalized thiols
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 4/15/2010
Authors: Mariona Coll Bau, Oana Jurchescu, Nadine Emily Gergel-Hackett, Curt A Richter, Christina Ann Hacker
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=907067

43. Structural and electrical properties of Flip Chip Laminated metal-molecule-silicon structures modifying molecular backbone and atomic tether
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 10/19/2011
Authors: Mariona Coll Bau, Nadine Emily Gergel-Hackett, Curt A Richter, Christina Ann Hacker
Abstract: The formation of electrical contacts on organic molecules preserving their integrity and using a scalable technique is a key step toward the fabrication of molecular electronic devices. Here we study the structural and electrical properties of metal- ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=906090

44. Super-hydrophobic and/or Super-hydrophilic Surfaces Made by Plasma Process
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 5/8/2009
Authors: Lei Chen, Gerard Henein, James Alexander Liddle
Abstract: In this paper, a simple, fast, all-plasma surface modification (APSM) process, which can form super-hydrophobic and/or super-hydrophilic surfaces is introduced. The APSM process includes plasma-induced surface nano-pattern formation, substrate etchin ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=901919

45. Synthesis of Photoactive Magnetic Nanoparticles with Atomic Layer Deposition
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 3/8/2010
Authors: Yun Zhou, David M. King, Jianhua Li, Kathryn S. Barrett, Ronald B Goldfarb, Alan W. Weimer
Abstract: Iron-based magnetic nanoparticles have been produced by decomposition of iron oxalate powder. The micron-sized iron oxalate powder was first ground using a cryogenic milling process. A titanium dioxide (TiO^d2^) thin film was then deposited on the sy ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=904569

46. Temperature-dependent mechanical-resonance frequencies and damping in ensembles of gallium nitride nanowires
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 10/22/2012
Authors: Kristine A Bertness, Norman A Sanford, J. R. Montague, H.S. Park, Victor M. Bright, C. T. Rogers
Abstract: We have measured singly clamped cantilever mechanical-resonances in ensembles of as-grown gallium nitridenanowires (GaN NWs), from 12 K to 320 K. Resonance frequencies are approximately linearly dependent on temperature near 300 K ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=910038

47. The evaluation of photo/e-beam complementary grayscale lithography for high topography 3D structure
Topic: Nanofabrication, Nanomanufacturing, and Nanoprocessing
Published: 3/29/2013
Authors: Liya Yu, Richard J Kasica, Robert Dennis Newby, Lei Chen, Vincent K Luciani
Abstract: This article demonstrates and evaluates photo/e-beam grayscale complementary lithography processes for the fabrication of large area, high topography grayscale structure. The combination of these two techniques capitalizes on the capability of photol ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=913677



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