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Focused ion beam milling

L.A. Giannuzzi, J.L. Brown, S.R. Brown, R.B. Irwin, and F.A. Stevie, Focused ion beam milling and micromanipulation lift-out for site specific cross-sectional TEM specimen preparation, Mater. Res. Soc. Symp. Proc., 480 19-27, 1997. [Pg.635]

J. A. Veerman, A. M. Otter, L. Kuipers and N. F. van Hulst, High definition aperture probes for near-field optical microscopy fabricated by focused ion beam milling, Appl. Phys. Lett., 72 (1998) 3115-3117. [Pg.140]

Focused ion beam milling Very local removal of... [Pg.65]

Zhang SJ, Fang FZ, Xu ZW, Hu XT (2009) Controlled morphology of micro tools shaped using focused ion beam milling technique. J Vac Sci Technol B 27(3) 1304-1309... [Pg.723]

Microinjection Molding for Microfluidics Applications, Fig. 13 Comparison of focused ion beam milled patterns on conventional tool steel (a) and bulk metallic glass (b) (Reprinting with permission) [10]... [Pg.2098]

L.A. Giannuzzi and F.A. Stevie, A review of focused ion beam milling techniques for TEM specimen preparation . Micron, 1999,30,197-204. [Pg.284]

Larson, D.I, Foord, D.T., Petford-Long, A.K., Liew, H., Blamire, M.G., Cerezo, A., Smith, G.D.W. (1999) Field-ion specimen preparation using focused ion-beam milling. [Pg.940]

Sears, K., Skourtis, C., Atkinson, K., Finn, N., Humphries, W. Focused ion beam milling of carbon nanotube ytuns to study the relationship between structure and strength. Caibon 48(15), 4450-4456 (2010)... [Pg.60]

Brostow, W, Gorman, B. P., and Olea-Mejia O. (2007). Focused ion beam milling and scanning electron microscopy characterization of polymer+metal hybrids. Materials Letters 61(6), 1333-1336. [Pg.405]

Nanofluidic systems constracted for fluorescent single molecule detection are relatively simple with nanochannels connected to microchannels at each side of the nanochannels and molecules of interest are usually introduced into the nanochannels through electrophoresis for fluorescent detection. Various kinds of nanochannel fabrication techniques such as focused ion beam milling and nanoimprint Uthography have been used to fabricate the nanofluidic channels. The fabricated nanofluidic system is usually positioned on a fluorescent microscope for fluorescent single molecule detection. [Pg.1420]

FIGURE 1.23 (a) SEM image of a CVD-carbon-filled quartz nanopipette. (With kind permission from Springer Science + Business Media, Hu, K. et al., Platinized carbon nanoelectrodes as potentiometric and amperometric SECM probes, J. Solid State Electrochem., Vol. 17, 2013 pp. 2971-2977.) SEM images of (b) carbon nanoring and (c) carbon nanoring/nano-pore tips. (Thakar, R. et al.. Multifunctional carbon nanoelectrodes fabricated by focused ion beam milling. Analyst, Vol. 138, 2013 pp. 5973-5982. With permission from the Royal Society of Chemistry.)... [Pg.38]

A. Meister, M. Liley, J. Brugger, R. Pugin, and H. Heinzelmann, Nanodispenser for attoliter volume deposition using atomic force microscopy probes modified by focused-ion-beam milling, Appl. Phys. Lett, 85, 6260-6262 (2004). [Pg.488]

Lithography and plasma etching micromilling embossing injection micromolding broad area ion-beam milling focused ion beam milling... [Pg.15]


See other pages where Focused ion beam milling is mentioned: [Pg.53]    [Pg.271]    [Pg.177]    [Pg.9]    [Pg.496]    [Pg.282]    [Pg.282]    [Pg.408]    [Pg.237]    [Pg.1254]    [Pg.1254]    [Pg.2098]    [Pg.2099]    [Pg.2363]    [Pg.3127]    [Pg.3110]    [Pg.3176]    [Pg.587]    [Pg.594]    [Pg.118]    [Pg.51]    [Pg.760]    [Pg.760]    [Pg.1941]    [Pg.68]    [Pg.332]    [Pg.98]    [Pg.206]    [Pg.177]   
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See also in sourсe #XX -- [ Pg.7 , Pg.261 , Pg.265 , Pg.266 , Pg.268 , Pg.269 , Pg.285 , Pg.287 , Pg.288 ]

See also in sourсe #XX -- [ Pg.165 ]

See also in sourсe #XX -- [ Pg.760 ]




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Ion focusing

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