000 04033nam a22004455i 4500
001 u372326
003 SIRSI
005 20160812084053.0
007 cr nn 008mamaa
008 110721s2011 xxu| s |||| 0|eng d
020 _a9781441998996
_9978-1-4419-9899-6
040 _cMX-MeUAM
050 4 _aT174.7
082 0 4 _a620.5
_223
100 1 _aTseng, Ampere A.
_eeditor.
245 1 0 _aTip-Based Nanofabrication
_h[recurso electrónico] :
_bFundamentals and Applications /
_cedited by Ampere A. Tseng.
250 _a1.
264 1 _aNew York, NY :
_bSpringer New York,
_c2011.
300 _aX, 466 p.
_bonline resource.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
505 0 _aMechanical Scratching with Single and Dual Sources Using Atomic Force Microscopes -- Local Oxidation Using Dynamic Force Mode: Toward Higher Reliability and Efficiency -- Double-Layer Local Oxidation Using Atomic Force Microscopy -- Nanomanipulation of Biological Macromolecules by Atomic Force Microscopy -- Nanografting: Bottom-Up Fabrication of Designed Nanostructures -- Nanopattern Formation Using Dip Pen Nanolithography -- Nanofabrication of Functional Nanostructures by Thermochemical Nanolithography -- Proton-fountain Electric-field-assisted Nanolithography -- Development of High-Throughput Control Techniques for Tip-Based Nanofabrication -- Scanning Probe Based Lithography and Nanomanipulation on Graphene -- Diamondoid Mechanosynthesis for Tip-Based Nanofabrication -- Constraints and Challenges in Tip Based Nanofabrication.
520 _aTip-Based Nanofabrication: Fundamentals and Applications discusses the development of cantilevered nanotips  and how they evolved from scanning probe microscopy and are able to manipulate  environments at nanoscale on substrates generating different nanoscale patterns  and structures. Also covered are the advantages of ultra-high resolution  capability, how to use tip based nanofabrication technology as a tool in the manufacturing of nanoscale structures, single-probe tip technologies, multiple-probe tipmethodology, 3-D modeling and fabrication, and the latest in instrument development. Nanofabrication is critical to the realization of potential benefits in the field of electronics, bioengineering and material science. One enabling  technology in nanofabrication is Tip-Based Nanofabrication, which makes use of  functionalized micro-cantilevers with nanoscale tips. In addition to these areas of coverage, this book also: Discusses the advantages of using tip based  nanofabrication including its ultra-high resolution capability, ease of use, and low instrument cost Demonstrates how to use tip based nanofabrication as a tool in the  manufacturing of nanoscale structure, and for inducing controlled patterns on a  surface with nanometer scale precision Covers the latest in throughput enhancement methodology including using multi-probes, high scanning speeds, and tip-based stamps Presents  recent advances in several tip-induced processes, including thermochemical nanolithography, electric-field-assisted nanolithography, electrochemical nanomachining, nanografting, and dip pen nanolithography Tip-Based Nanofabrication: Fundamentals and Applications is an ideal volume for researchers and engineers working at the forefront of nanotechnology.
650 0 _aEngineering.
650 0 _aOptical materials.
650 0 _aNanotechnology.
650 1 4 _aEngineering.
650 2 4 _aNanotechnology and Microengineering.
650 2 4 _aNanotechnology.
650 2 4 _aOptical and Electronic Materials.
710 2 _aSpringerLink (Online service)
773 0 _tSpringer eBooks
776 0 8 _iPrinted edition:
_z9781441998989
856 4 0 _zLibro electrónico
_uhttp://148.231.10.114:2048/login?url=http://link.springer.com/book/10.1007/978-1-4419-9899-6
596 _a19
942 _cLIBRO_ELEC
999 _c200206
_d200206