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Self Organized Arrays Of Gold Nanoparticles


Self Organized Arrays Of Gold Nanoparticles
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Self Organized Arrays Of Gold Nanoparticles


Self Organized Arrays Of Gold Nanoparticles
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Author : Luca Anghinolfi
language : en
Publisher: Springer Science & Business Media
Release Date : 2012-06-16

Self Organized Arrays Of Gold Nanoparticles written by Luca Anghinolfi and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-06-16 with Science categories.


This thesis addresses the fabrication and investigation of the optical response of gold nanoparticle arrays supported on insulating LiF(110) nanopatterned substrates. Motivated by the discovery of the intriguing effects that arise when electromagnetic radiation interacts with metallic nanostructures, the thesis focuses on the application of bottom-up approaches to the fabrication of extended-area plasmonic nanostructures, and the optimization of their optical response. By developing a sophisticated effective-medium model and comparing the experimental findings with model calculations, the author explores the role of the interparticle electromagnetic coupling and array dimensionality on the collective plasmonic behavior of the array, giving insights into the physical mechanisms governing the optical response.



Evaporative Self Assembly Of Ordered Complex Structures


Evaporative Self Assembly Of Ordered Complex Structures
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Author : Zhiqun Lin
language : en
Publisher: World Scientific
Release Date : 2012-02-28

Evaporative Self Assembly Of Ordered Complex Structures written by Zhiqun Lin and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-02-28 with Science categories.


The use of spontaneous self-assembly, as a lithographic tool and as an external field-free means to construct well-ordered and intriguing patterns, has received much attention due to its ease of producing complex, large-scale structures with small feature sizes. An extremely simple route to highly-ordered, complex structures is the evaporative self-assembly of nonvolatile solutes (e.g., polymers, nanoparticles, carbon nanotubes, and DNA) from a sessile droplet on a solid substrate. To date, a few studies have elegantly demonstrated that self-organized nanoscale, microscale, and hierarchically structured patterns have been readily obtained from sophisticated control of droplet evaporation. These include convective assembly in evaporating menisci, the alignment of nanomaterials by programmed dip coating and controlled anisotrophic wetting/dewetting processes, facile microstructuring of functional polymers by the “Breath Figure” method, controlled evaporative self-assembly in confined geometries, etc.This book is unique in this regard in providing a wide spectrum of recent experimental and theoretical advances in evaporative self-assembly techniques. The ability to engineer an evaporative self-assembly process that yields a broad range of complex, well-ordered and intriguing structures with small feature sizes composed of polymers of nanocrystals of different size and shapes as well as DNA over large areas offers tremendous potential for applications in electronics, optoelectronics, photonics, sensors, information processing and data storage devices, nanotechnology, high-throughput drug discovery, chemical detection, combinatorical chemistry, and biotechnology.



The Self Assembly Of Colloidal Particles Into 2d Arrays


The Self Assembly Of Colloidal Particles Into 2d Arrays
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Author : Brooks Douglas Rabideau
language : en
Publisher:
Release Date : 2007

The Self Assembly Of Colloidal Particles Into 2d Arrays written by Brooks Douglas Rabideau and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007 with Colloids categories.


As the feature size of new devices continues to decrease so too does the feasibility of top-down methods of patterning them. In many cases bottom-up methods are replacing the existing methods of assembly, as having building blocks self-organize into the desired structure appears, in many cases, to be a much more advantageous route. Self-assembled nanoparticulate films have a wide range of potential applications; high-density magnetic media, sensing arrays, meta-materials and as seeds for 3D photonic crystals to name a few. Thus, it is critical that we understand the fundamental dynamics of pattern formation on the nanoparticulate and colloidal scale so that we may have better control over the formation and final quality of these structures. We study computationally the self-organization of colloidal particles in 2D using both Monte Carlo and dynamic simulation We present 3 studies employing Monte Carlo simulation. In the first study, Monte Carlo simulations were used to understand the experimental observation of highlyordered 2D arrays of bidisperse, stabilized gold nanoparticles. It was shown that the LS lattice forms with the addition of interparticle forces and a simple compressive force, revealing that bidisperse lattice formation is, in fact, a dynamic process. It was evident that the LS lattice forms in large part because the particles within the lattice reside in their respective interparticle potential wells. In the second Monte Carlo study, this information was used to predict size-ratios and surface coverages for novel lattice structures. These predictions are intended to guide experimentalists in their search for these exciting new structures. In the third study it was shown that polydisperse amounts of amorphous-silicon nanoparticles could form 2D clusters exhibiting long-range orientational order even in the absence of translational order. Monte Carlo simulations were performed, which included lateral capillary forces and a simple stabilizing repulsion, resulting in structures that were strikingly similar to the experimentally observed In the fourth study we used dynamic simulation to study the hydrodynamicallyassisted self-organization of DNA-functionalized colloids in 2D. It was shown that hydrodynamic forces allow a more thorough sampling of phase space than through thermal or Brownian forces alone.



Self Assembling Proteins As Templates For Gold Nanoparticle Arrays


Self Assembling Proteins As Templates For Gold Nanoparticle Arrays
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Author : Amish Ashwin Patel
language : en
Publisher:
Release Date : 2006

Self Assembling Proteins As Templates For Gold Nanoparticle Arrays written by Amish Ashwin Patel and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006 with categories.




Synthesis Of Self Organized Dendrimers And Dendronized Nanohybrids And Their Physical Properties


Synthesis Of Self Organized Dendrimers And Dendronized Nanohybrids And Their Physical Properties
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Author : Zsuzsanna tamara Nagy
language : en
Publisher:
Release Date : 2012

Synthesis Of Self Organized Dendrimers And Dendronized Nanohybrids And Their Physical Properties written by Zsuzsanna tamara Nagy and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012 with categories.


The need to expand further the range of mesomorphic organization, develop original materials where different functionalities can be added (i.e. multifunctional), and to design “multitask materials” with tunable properties are particularly interesting and crucial challenges for potential uses in future technologies. On the one hand, we focused on the design and synthesis of multifunctional materials (liquid crystalline, dendritic, photoresponisve) which are suitable for making thin films where photoinduced optical anisotropy and surface relief gratings can be generated. The mesomorphic behaviour of these dendrimers was investigated and also their optical properties. On the other hand, we grafted structurally related protodendritic mesogenic ligands to monodisperse gold nanoparticles to elaborate liquid crystalline hybrids in order to self-organize NPs in periodic arrays. A set of dendronized gold nanohybrids was synthesized to carry out this study.



Linear Self Assembly Of Large Gold Nanoparticles In Liquid Crystal Defect Arrays


Linear Self Assembly Of Large Gold Nanoparticles In Liquid Crystal Defect Arrays
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Author : Anja-Maria Seidel
language : en
Publisher:
Release Date : 2013

Linear Self Assembly Of Large Gold Nanoparticles In Liquid Crystal Defect Arrays written by Anja-Maria Seidel and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013 with categories.




Amorphous Nanophotonics


Amorphous Nanophotonics
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Author : Carsten Rockstuhl
language : en
Publisher: Springer Science & Business Media
Release Date : 2013-02-15

Amorphous Nanophotonics written by Carsten Rockstuhl and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-02-15 with Science categories.


This book represents the first comprehensive overview over amorphous nano-optical and nano-photonic systems. Nanophotonics is a burgeoning branch of optics that enables many applications by steering the mould of light on length scales smaller than the wavelength with devoted nanostructures. Amorphous nanophotonics exploits self-organization mechanisms based on bottom-up approaches to fabricate nanooptical systems. The resulting structures presented in the book are characterized by a deterministic unit cell with tailored geometries; but their spatial arrangement is not controlled. Instead of periodic, the structures appear either amorphous or random. The aim of this book is to discuss all aspects related to observable effects in amorphous nanophotonic material and aspects related to their design, fabrication, characterization and integration into applications. The book has an interdisciplinary nature with contributions from scientists in physics, chemistry and materials sciences and sheds light on the topic from many directions.



Dekker Encyclopedia Of Nanoscience And Nanotechnology


Dekker Encyclopedia Of Nanoscience And Nanotechnology
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Author : James A. Schwarz
language : en
Publisher: CRC Press
Release Date : 2004

Dekker Encyclopedia Of Nanoscience And Nanotechnology written by James A. Schwarz and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2004 with Science categories.




Comprehensive Nanoscience And Nanotechnology


Comprehensive Nanoscience And Nanotechnology
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Author :
language : en
Publisher: Academic Press
Release Date : 2019-01-02

Comprehensive Nanoscience And Nanotechnology written by and has been published by Academic Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-01-02 with Technology & Engineering categories.


Comprehensive Nanoscience and Technology, Second Edition, Five Volume Set allows researchers to navigate a very diverse, interdisciplinary and rapidly-changing field with up-to-date, comprehensive and authoritative coverage of every aspect of modern nanoscience and nanotechnology. Presents new chapters on the latest developments in the field Covers topics not discussed to this degree of detail in other works, such as biological devices and applications of nanotechnology Compiled and written by top international authorities in the field



Electrospun Nanofibers For Biomedical Applications


Electrospun Nanofibers For Biomedical Applications
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Author : Albino Martins
language : en
Publisher: MDPI
Release Date : 2020-05-29

Electrospun Nanofibers For Biomedical Applications written by Albino Martins and has been published by MDPI this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020-05-29 with Science categories.


Electrospinning is a versatile and effective technique widely used to manufacture nanofibrous structures from a diversity of materials (synthetic, natural or inorganic). The electrospun nanofibrous meshes’ composition, morphology, porosity, and surface functionality support the development of advanced solutions for many biomedical applications. The Special Issue on “Electrospun Nanofibers for Biomedical Applications” assembles a set of original and highly-innovative contributions showcasing advanced devices and therapies based on or involving electrospun meshes. It comprises 13 original research papers covering topics that span from biomaterial scaffolds’ structure and functionalization, nanocomposites, antibacterial nanofibrous systems, wound dressings, monitoring devices, electrical stimulation, bone tissue engineering to first-in-human clinical trials. This publication also includes four review papers focused on drug delivery and tissue engineering applications.