By Carlos R. Cabrera, Félix Miranda
Complex Nanomaterials for Aerospace functions has been constructed for a neighborhood attracted to area technological know-how and nanotechnology. Scientists and engineers from a number of NASA box facilities and the Jet Propulsion Laboratory, collage of Puerto Rico, The Pennsylvania nation collage, and INFN-Laboratori Nazionali di Frascati, Italy, have joined efforts to debate the purposes of nanomaterials in sensors, surroundings revitalization in liveable area systems, lifestyles help structures, regenerative gasoline cells, lithium-ion batteries, strong light-weight fabrics, nanoelectr. Read more...
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Maxime Guinel from UPR-Rio Piedras to the experimental results. UPR authors acknowledge support from NASA-URC grant #NNX08BA48A and NSF-grant #1002410. References 1. Hunter, G. , Oberle, L. , and Hong, T. (2011). Integrated system health management in exploration applications. In System Health Management: With Aerospace Applications (Johnson, S. ) Chapter 25, John Wiley & Sons, Ltd, Chichester, West Sussex, UK. 29 30 Advanced Sensor Nanomaterials for Aerospace Applications 2. Hunter, G. , Xu, J.
85. , and Basak, D. (2010). Highly efficient ultraviolet photodetection in nanocolumnar RF sputtered ZnO films: a comparison between sputtered, sol–gel and aqueous chemically grown nanostructures, Nanaotechnology, 21, 375202. 86. , and Segawa, Y. (1998). MgxZn1−xO as a II–VI widegap semiconductor alloy, Appl. Phys. , 72, 2466. 87. , Chang, K. , Aronova, M. , Vispute, R. , and Bendersky, L. A. (2003). Monolithic multichannel References ultraviolet detector arrays and continuous phase evolution in MgxZn1−xO composition spreads, J.
Advanced Nanomaterials for Aerospace Applications by Carlos R. Cabrera, Félix Miranda