Advances in Nanomaterials and Nanostructures, Volume 229 by Kathy Lu, Navin Manjooran, Miladin Radovic, Gary Pickrell,

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By Kathy Lu, Navin Manjooran, Miladin Radovic, Gary Pickrell, Eugene Medvedovski, Eugene A. Olevsky, Chris Li, Gurpreet Singh, Nitin Chopra

This e-book comprises 17 papers from the managed Processing of Nanoparticle-based fabrics and Nanostructured movies; Nanotechnology for strength, Healthcare, and undefined; and Nanolaminated Ternary Carbides and Nitrides (MAX stages) symposia held throughout the 2010 fabrics technology and expertise (MS&T'10) assembly, October 17-21, 2010, Houston, Texas. themes comprise: Direct production; Low measurement Nanomaterials; Processing and Sintering; skinny motion pictures; Nanolaminated Ternary Carbides and Nitrides (MAX Phases); and Novel Nanomaterial Approaches.Content:

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After 8 h of irradiation another spectrum was taken. In this case a signal at 410 nm, which can be divided into the signal at 400 nm related to the silver nanospheres, and the weak signal at 332 nm, which was related to the out of plane quadrupole resonance of triangular nanoprism, was observed. The presence of a small peak at 785 nm can be observed, and this one is related to the out of plane quadrupole resonance of triangular nanoprisms. The spectrum of the sample irradiated for 24 h shows the presence of three peaks at 330 (weak) 400 (medium) and 787 (strong and broad) nm.

75. Merzhanov, AG. & Khaikin, BI. Prog. Energy Combust. , 14, 1-98 (1988). 76. Anathakrishna, G. Physics Reports, 440, 113-259 (2007). 77. Li, HP. & Sekhar, JA. J. Mater « « . , 8 ( 1 0 ) , 2515-2523 (1993). 78. Kim, HY. Chung, DS. & Hong, SH. Mater. Sei. Eng. A, 396, 376-384 (2005). 79. Jung, SB. Minamino, Y. Yamane, T. & Saji, S. J. Mater. Sei. , 12, 1684-1686 (1993). 80. Larson, EM. Wing, J. Holt, JB. Waide, PA. Butt, G. & Termonello, LJ. J. , 8(7), 1533-1541 (1993). 81. Merzhanov, AG. J. Mater.

1 s of synthesis and that the initial NiAl that forms is disordered and only later transforms during cooling to a fully ordered B2 structure [46,60]; (2) a cycle of intermediary formation and dissolution of intermediate Ni-Al compounds is noted particularly that of Ni2Al3 [24,46,60-61]; (3) the early stage diffraction indicates extremely small grains (grainy patterns) with no particular orientation as would be noted if nano-crystals are formed [32]; (4) the NiAl diffraction peak-widths narrow with time [32,46,60]; and finally (5) the diffraction patterns indicate ordering, graininess and texturing [32,60] as would be noted from the expected grain growth and ordering in thermally constrained samples.

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