Advances in nanodevices and nanofabrication : selected by Qing Zhang, W. I. Milne

By Qing Zhang, W. I. Milne

A number of units at nanometer/molecular scale for digital, photonic, optoelectronic, organic, and mechanical functions were created during the fast improvement of fabrics and fabrication expertise. extra improvement of nanodevices strongly is dependent upon the state of the art wisdom of technology and know-how on the sub-100 nm scale. This e-book provides and highlights a number of the key advances on, yet no longer constrained to, digital and optoelectronic units of nanometer/molecular scale, nanomechanics and nanoelectromechanical platforms, electromechanical coupled units, manipulation and aligning strategies at nanometer/molecular scale, quantum phenomena, modeling of nanodevices and nanostructures, fabrication and estate characterization of nanodevices, and nanofabrication with centred beam know-how.

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72, 1998. [30] Z. R. , “Novel nanostructures of functional oxides synthesized by thermal evaporation,” Advanced Functional Materials, vol. 13, pp. 9–24, 2003. [31] R. F. , “Morphology-controlled synthesis, growth mechanism, optical and microwave absorption properties of ZnO nanocombs,” Journal of Physics D: Applied Physics, vol. 41, 2008. [32] Z. , “Template-based fabrication of nanowire-nanotube hybrid arrays,” Nanotechnology, vol. 19, 2008. [33] M. H. , “Ag nanowire formation within mesoporous silica,” Chemical Communications, pp.

In terms of number of NWs, definitely the bottom-up approach has an advantage over the top-down approach, and indeed, for the application than requires bundles of NWs or canopies of NWs, it is more appropriate to use a bottom-up approach. Moreover, very sophisticated and advanced equipment is not required. However, NWs grown using bottom-up synthesis have one feature in common. Due to the growing mechanism NWs are reaching outward, mostly vertically, and exist in bundles on the substrate. While protruding NWs are suitable for open sensing, for example, gas sensing, and do not required complex device integration [90], doping can be a great challenge in term of better control of dopants concentration and dopants distribution uniformity [5].

3340–3343, 2003. [58] H. , “Fabrication of patterned polymer nanowire arrays,” ACS Nano, vol. 5, pp. 1476–1482, 2011. [59] R. M. Penner, “Rapid, wafer-scale laser nanoprinting of polymer surfaces,” ACS Nano, vol. 5, pp. 690–692, 2011. [60] T. A. , “Properties of large-area nanomagnet arrays with 100 nm period made by interferometric lithography,” Journal of Applied Physics, vol. 85, pp. 6160–6162, 1999. [61] Y. K. , “A spacer patterning technology for nanoscale CMOS,” IEEE Transactions on Electron Devices, vol.

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