Functional Nanostructures Fabricated By Focused Electron Ion Beam Induced Deposition
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Functional Nanostructures Fabricated by Focused Electron Ion Beam Induced Deposition
Author | : Rosa Córdoba Castillo |
Publsiher | : Springer Science & Business Media |
Total Pages | : 157 |
Release | : 2013-10-08 |
Genre | : Science |
ISBN | : 9783319020815 |
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This thesis constitutes a detailed study of functional nanostructures (ferromagnetic, superconducting, metallic and semiconducting) fabricated by focused electron/ion beam induced deposition techniques. The nanostructures were grown using different precursor materials such as Co2(CO)8, Fe2(CO)9, W(CO)6, (CH3)3Pt(CpCH3) and were characterized by a wide range of techniques. This work reports results obtained for the morphology, the microstructure, the composition, the electrical transport mechanism, magnetic and superconducting properties of nanostructures. The results offers exciting prospects in a wide range of applications in nanotechnology and condensed matter physics.
Functional Nanostructures Fabricated by Focused Electron Ion Beam Induced Deposition
Author | : Rosa Cordoba Castillo |
Publsiher | : Unknown |
Total Pages | : 164 |
Release | : 2013-10-31 |
Genre | : Electronic Book |
ISBN | : 331902082X |
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Nanofabrication Using Focused Ion and Electron Beams
Author | : Ivo Utke,Stanislav Moshkalev,Phillip Russell |
Publsiher | : OUP USA |
Total Pages | : 830 |
Release | : 2012-05 |
Genre | : Technology & Engineering |
ISBN | : 9780199734214 |
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This book comprehensively reviews the achievements and potentials of a minimally invasive, three-dimensional, and maskless surface structuring technique operating at nanometer scale by using the interaction of focused ion and electron beams (FIB/FEB) with surfaces and injected molecules.
Studies of Nanoconstrictions Nanowires and Fe3O4 Thin Films
Author | : Amalio Fernandez-Pacheco |
Publsiher | : Springer Science & Business Media |
Total Pages | : 196 |
Release | : 2011-01-22 |
Genre | : Technology & Engineering |
ISBN | : 9783642158018 |
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This work constitutes a detailed study of electrical and magnetic properties in nanometric materials with a range of scales: atomic-sized nanoconstrictions, micro- and nanowires and thin films. Firstly, a novel method of fabricating atomic-sized constrictions in metals is presented; it relies on measuring the conduction of the device while a focused-ion-beam etching process is in progress.
Nanofabrication
Author | : Ampere A. Tseng |
Publsiher | : World Scientific |
Total Pages | : 583 |
Release | : 2008 |
Genre | : Technology & Engineering |
ISBN | : 9789812790897 |
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Many of the devices and systems used in modern industry are becoming progressively smaller and have reached the nanoscale domain. Nanofabrication aims at building nanoscale structures, which can act as components, devices, or systems, in large quantities at potentially low cost. Nanofabrication is vital to all nanotechnology fields, especially for the realization of nanotechnology that involves the traditional areas across engineering and science. This is the first book solely dedicated to the manufacturing technology in nanoscale structures, devices, and systems and is designed to satisfy the growing demands of researchers, professionals, and graduate students. Both conventional and non-conventional fabrication technologies are introduced with emphasis on multidisciplinary principles, methodologies, and practical applications. While conventional technologies consider the emerging techniques developed for next generation lithography, non-conventional techniques include scanning probe microscopy lithography, self-assembly, and imprint lithography, as well as techniques specifically developed for making carbon tubes and molecular circuits and devices. Sample Chapter(s). Chapter 1: Atom, Molecule, and Nanocluster Manipulations for Nanostructure Fabrication Using Scanning Probe Microscopy (3,320 KB). Contents: Atomic Force Microscope Lithography (N Kawasegi et al.); Nanowire Assembly and Integration (Z Gu & D H Gracias); Extreme Ultraviolet Lithography (H Kinoshita); Electron Projection Lithography (T Miura et al.); Electron Beam Direct Writing (K Yamazaki); Electron Beam Induced Deposition (K Mitsuishi); Focused Ion Beams and Interaction with Solids (T Ishitani et al.); Nanofabrication of Nanoelectromechanical Systems (NEMS): Emerging Techniques (K L Ekinci & J Brugger); and other papers. Readership: Researchers, professionals, and graduate students in the fields of nanoengineering and nanoscience.
FIB Nanostructures
Author | : Zhiming M. Wang |
Publsiher | : Springer Science & Business Media |
Total Pages | : 536 |
Release | : 2014-01-04 |
Genre | : Technology & Engineering |
ISBN | : 9783319028743 |
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FIB Nanostructures reviews a range of methods, including milling, etching, deposition, and implantation, applied to manipulate structures at the nanoscale. Focused Ion Beam (FIB) is an important tool for manipulating the structure of materials at the nanoscale, and substantially extends the range of possible applications of nanofabrication. FIB techniques are widely used in the semiconductor industry and in materials research for deposition and ablation, including the fabrication of nanostructures such as nanowires, nanotubes, nanoneedles, graphene sheets, quantum dots, etc. The main objective of this book is to create a platform for knowledge sharing and dissemination of the latest advances in novel areas of FIB for nanostructures and related materials and devices, and to provide a comprehensive introduction to the field and directions for further research. Chapters written by leading scientists throughout the world create a fundamental bridge between focused ion beam and nanotechnology that is intended to stimulate readers' interest in developing new types of nanostructures for application to semiconductor technology. These applications are increasingly important for the future development of materials science, energy technology, and electronic devices. The book can be recommended for physics, electrical engineering, and materials science departments as a reference on materials science and device design.
Ion Beams in Nanoscience and Technology
Author | : Ragnar Hellborg,Harry J. Whitlow,Yanwen Zhang |
Publsiher | : Springer Science & Business Media |
Total Pages | : 450 |
Release | : 2009-11-09 |
Genre | : Technology & Engineering |
ISBN | : 9783642006234 |
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Energetic ion beam irradiation is the basis of a wide plethora of powerful research- and fabrication-techniques for materials characterisation and processing on a nanometre scale. Materials with tailored optical, magnetic and electrical properties can be fabricated by synthesis of nanocrystals by ion implantation, focused ion beams can be used to machine away and deposit material on a scale of nanometres and the scattering of energetic ions is a unique and quantitative tool for process development in high speed electronics and 3-D nanostructures with extreme aspect radios for tissue engineering and nano-fluidics lab-on-a-chip may be machined using proton beams. This book will benefit practitioners, researchers and graduate students working in the field of ion beams and application and more generally everyone concerned with the broad field of nanoscience and technology.
Nanofabrication
Author | : Maria Stepanova,Steven Dew |
Publsiher | : Springer Science & Business Media |
Total Pages | : 344 |
Release | : 2011-11-08 |
Genre | : Technology & Engineering |
ISBN | : 9783709104248 |
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Intended to update scientists and engineers on the current state of the art in a variety of key techniques used extensively in the fabrication of structures at the nanoscale. The present work covers the essential technologies for creating sub 25 nm features lithographically, depositing layers with nanometer control, and etching patterns and structures at the nanoscale. A distinguishing feature of this book is a focus not on extension of microelectronics fabrication, but rather on techniques applicable for building NEMS, biosensors, nanomaterials, photonic crystals, and other novel devices and structures that will revolutionize society in the coming years.