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Nanoscale processes on insulating su...
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Gnecco, Enrico.{me_controlnum}
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Nanoscale processes on insulating surfaces
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Nanoscale processes on insulating surfaces/ Enrico Gnecco, Marek Szymonski.
作者:
Gnecco, Enrico.{me_controlnum}
其他作者:
Szymoski, Marek.
出版者:
Singapore ;World Scientific Pub. Co., : c2009.,
面頁冊數:
xiv, 186 p. :ill. (some col.)
標題:
Scanning probe microscopy. -
電子資源:
http://www.worldscientific.com/worldscibooks/10.1142/7137#t=toc
ISBN:
9789812837639 (electronic bk.)
Nanoscale processes on insulating surfaces
Gnecco, Enrico.{me_controlnum}
Nanoscale processes on insulating surfaces
[electronic resource] /Enrico Gnecco, Marek Szymonski. - Singapore ;World Scientific Pub. Co.,c2009. - xiv, 186 p. :ill. (some col.)
Includes bibliographical references (p. 163-181) and index.
Ionic crystals are among the simplest structures in nature. They can be easily cleaved in air and in vacuum, and the resulting surfaces are atomically flat on areas hundreds of nanometers wide. With the development of scanning probe microscopy, these surfaces have become an ideal "playground" to investigate several phenomena occurring on the nanometer scale. This book focuses on the fundamental studies of atomically resolved imaging, nanopatterning, metal deposition, molecular self-assembling and nanotribological processes occurring on ionic crystal surfaces. Here, a significant variety of structures are created by nanolithography, annealing and irradiation by electrons, ions or photons, and are used to confine metal particles and organic molecules or to improve our basic understanding of friction and wear on the atomic scale. Metal oxides with wide band gap are also discussed. Altogether, the results obtained so far will have an undoubted impact on the future development of nanoelectronics and nanomechanics.
Electronic reproduction.
Singapore :
World Scientific Publishing Co.,
2009.
System requirements: Adobe Acrobat Reader.
ISBN: 9789812837639 (electronic bk.)Subjects--Topical Terms:
603213
Scanning probe microscopy.
LC Class. No.: QH212.S33
Dewey Class. No.: 502.82
Nanoscale processes on insulating surfaces
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Ionic crystals are among the simplest structures in nature. They can be easily cleaved in air and in vacuum, and the resulting surfaces are atomically flat on areas hundreds of nanometers wide. With the development of scanning probe microscopy, these surfaces have become an ideal "playground" to investigate several phenomena occurring on the nanometer scale. This book focuses on the fundamental studies of atomically resolved imaging, nanopatterning, metal deposition, molecular self-assembling and nanotribological processes occurring on ionic crystal surfaces. Here, a significant variety of structures are created by nanolithography, annealing and irradiation by electrons, ions or photons, and are used to confine metal particles and organic molecules or to improve our basic understanding of friction and wear on the atomic scale. Metal oxides with wide band gap are also discussed. Altogether, the results obtained so far will have an undoubted impact on the future development of nanoelectronics and nanomechanics.
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http://www.worldscientific.com/worldscibooks/10.1142/7137#t=toc
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