Scanning Microscopy for Nanotechnology

Scanning Microscopy for Nanotechnology
Author: Weilie Zhou,Zhong Lin Wang
Publsiher: Springer Science & Business Media
Total Pages: 533
Release: 2007-03-09
Genre: Technology & Engineering
ISBN: 9780387396200

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This book presents scanning electron microscopy (SEM) fundamentals and applications for nanotechnology. It includes integrated fabrication techniques using the SEM, such as e-beam and FIB, and it covers in-situ nanomanipulation of materials. The book is written by international experts from the top nano-research groups that specialize in nanomaterials characterization. The book will appeal to nanomaterials researchers, and to SEM development specialists.

Advanced Scanning Microscopy for Nanotechnology

Advanced Scanning Microscopy for Nanotechnology
Author: Weilie Zhou,Zhonglin Wang
Publsiher: Unknown
Total Pages: 450
Release: 2007
Genre: Nanotechnology
ISBN: 7040190087

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Handbook of Microscopy for Nanotechnology

Handbook of Microscopy for Nanotechnology
Author: Nan Yao,Zhong Lin Wang
Publsiher: Springer Science & Business Media
Total Pages: 745
Release: 2006-07-12
Genre: Technology & Engineering
ISBN: 9781402080067

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Nanostructured materials take on an enormously rich variety of properties and promise exciting new advances in micromechanical, electronic, and magnetic devices as well as in molecular fabrications. The structure-composition-processing-property relationships for these sub 100 nm-sized materials can only be understood by employing an array of modern microscopy and microanalysis tools. Handbook of Microscopy for Nanotechnology aims to provide an overview of the basics and applications of various microscopy techniques for nanotechnology. This handbook highlights various key microcopic techniques and their applications in this fast-growing field. Topics to be covered include the following: scanning near field optical microscopy, confocal optical microscopy, atomic force microscopy, magnetic force microscopy, scanning turning microscopy, high-resolution scanning electron microscopy, orientational imaging microscopy, high-resolution transmission electron microscopy, scanning transmission electron microscopy, environmental transmission electron microscopy, quantitative electron diffraction, Lorentz microscopy, electron holography, 3-D transmission electron microscopy, high-spatial resolution quantitative microanalysis, electron-energy-loss spectroscopy and spectral imaging, focused ion beam, secondary ion microscopy, and field ion microscopy.

Scanning Probe Microscopy in Nanoscience and Nanotechnology 3

Scanning Probe Microscopy in Nanoscience and Nanotechnology 3
Author: Bharat Bhushan
Publsiher: Springer Science & Business Media
Total Pages: 634
Release: 2012-10-16
Genre: Science
ISBN: 9783642254130

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This book presents the physical and technical foundation of the state of the art in applied scanning probe techniques. It constitutes a timely and comprehensive overview of SPM applications. The chapters in this volume relate to scanning probe microscopy techniques, characterization of various materials and structures and typical industrial applications, including topographic and dynamical surface studies of thin-film semiconductors, polymers, paper, ceramics, and magnetic and biological materials. The chapters are written by leading researchers and application scientists from all over the world and from various industries to provide a broader perspective.

Scanning Probe Microscopy in Nanoscience and Nanotechnology 2

Scanning Probe Microscopy in Nanoscience and Nanotechnology 2
Author: Bharat Bhushan
Publsiher: Springer Science & Business Media
Total Pages: 816
Release: 2010-12-17
Genre: Technology & Engineering
ISBN: 9783642104978

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This book presents the physical and technical foundation of the state of the art in applied scanning probe techniques. It constitutes a timely and comprehensive overview of SPM applications. The chapters in this volume relate to scanning probe microscopy techniques, characterization of various materials and structures and typical industrial applications, including topographic and dynamical surface studies of thin-film semiconductors, polymers, paper, ceramics, and magnetic and biological materials. The chapters are written by leading researchers and application scientists from all over the world and from various industries to provide a broader perspective.

Scanning Probe Microscopy of Functional Materials

Scanning Probe Microscopy of Functional Materials
Author: Sergei V. Kalinin,Alexei Gruverman
Publsiher: Springer Science & Business Media
Total Pages: 563
Release: 2010-12-13
Genre: Technology & Engineering
ISBN: 9781441971678

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The goal of this book is to provide a general overview of the rapidly developing field of novel scanning probe microscopy (SPM) techniques for characterization of a wide range of functional materials, including complex oxides, biopolymers, and semiconductors. Many recent advances in condensed matter physics and materials science, including transport mechanisms in carbon nanostructures and the role of disorder on high temperature superconductivity, would have been impossible without SPM. The unique aspect of SPM is its potential for imaging functional properties of materials as opposed to structural characterization by electron microscopy. Examples include electrical transport and magnetic, optical, and electromechanical properties. By bringing together critical reviews by leading researchers on the application of SPM to to the nanoscale characterization of functional materials properties, this book provides insight into fundamental and technological advances and future trends in key areas of nanoscience and nanotechnology.

Applied Scanning Probe Methods II

Applied Scanning Probe Methods II
Author: Bharat Bhushan,Harald Fuchs
Publsiher: Springer Science & Business Media
Total Pages: 456
Release: 2006-06-22
Genre: Technology & Engineering
ISBN: 9783540274537

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The Nobel Prize of 1986 on Sc- ningTunnelingMicroscopysignaled a new era in imaging. The sc- ning probes emerged as a new - strument for imaging with a p- cision suf?cient to delineate single atoms. At ?rst there were two – the Scanning Tunneling Microscope, or STM, and the Atomic Force Mic- scope, or AFM. The STM relies on electrons tunneling between tip and sample whereas the AFM depends on the force acting on the tip when it was placed near the sample. These were quickly followed by the M- netic Force Microscope, MFM, and the Electrostatic Force Microscope, EFM. The MFM will image a single magnetic bit with features as small as 10nm. With the EFM one can monitor the charge of a single electron. Prof. Paul Hansma at Santa Barbara opened the door even wider when he was able to image biological objects in aqueous environments. At this point the sluice gates were opened and a multitude of different instruments appeared. There are signi?cant differences between the Scanning Probe Microscopes or SPM, and others such as the Scanning Electron Microscope or SEM. The probe microscopes do not require preparation of the sample and they operate in ambient atmosphere, whereas, the SEM must operate in a vacuum environment and the sample must be cross-sectioned to expose the proper surface. However, the SEM can record 3D image and movies, features that are not available with the scanning probes.

Applied Scanning Probe Methods III

Applied Scanning Probe Methods III
Author: Bharat Bhushan,Harald Fuchs
Publsiher: Springer Science & Business Media
Total Pages: 414
Release: 2006-04-28
Genre: Technology & Engineering
ISBN: 9783540269106

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The Nobel Prize of 1986 on Sc- ning Tunneling Microscopy sig- led a new era in imaging. The sc- ning probes emerged as a new i- trument for imaging with a pre- sion suf?cient to delineate single atoms. At ?rst there were two – the Scanning Tunneling Microscope, or STM, and the Atomic Force Mic- scope, or AFM. The STM relies on electrons tunneling between tip and sample whereas the AFM depends on the force acting on the tip when it was placed near the sample. These were quickly followed by the - gneticForceMicroscope,MFM,and the Electrostatic Force Microscope, EFM. The MFM will image a single magnetic bit with features as small as 10nm. With the EFM one can monitor the charge of a single electron. Prof. Paul Hansma at Santa Barbara opened the door even wider when he was able to image biological objects in aqueous environments. At this point the sluice gates were opened and a multitude of different instruments appeared. There are signi?cant differences between the Scanning Probe Microscopes or SPM, and others such as the Scanning Electron Microscope or SEM. The probe microscopes do not require preparation of the sample and they operate in ambient atmosphere, whereas, the SEM must operate in a vacuum environment and the sample must be cross-sectioned to expose the proper surface. However, the SEM can record 3D image and movies, features that are not available with the scanning probes.