Surface Chemistry of Colloidal Nanocrystals

Surface Chemistry of Colloidal Nanocrystals
Author: Ana Luísa Daniel-da-Silva,Tito Trindade
Publsiher: Royal Society of Chemistry
Total Pages: 214
Release: 2021-02-08
Genre: Science
ISBN: 9781788019811

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The chemistry of nanomaterials has developed considerably in the past two decades, and concepts that have emerged from these developments are now well established. The surface modification of nanoparticles is a subject of intense research interest given its importance for many applications across a number of disciplines. This comprehensive guide is the first to be devoted to the surface chemistry of inorganic nanocrystals. Following an introduction to the physical chemistry of surfaces, chapters cover topics such as the surface modification of nanoparticles, water compatible, polymer-based, and inorganic nanocomposites, as well as relevant applications in catalysis, biotechnology and nanomedicine. Highlighting recent advances, Surface Chemistry of Colloidal Nanocrystals provides an integrated approach to chemical aspects related to the surface of nanocrystals. Written by prestigious scientists, this will be a useful resource for students and researchers working in surface science, nanoscience and materials science as well as those interested in the applications of the nanomaterials in areas such as health science, biology, and environmental engineering.

Surface Chemistry of Colloidal Nanocrystals

Surface Chemistry of Colloidal Nanocrystals
Author: Ana Luísa Daniel-da-Silva,Tito Trindade
Publsiher: Royal Society of Chemistry
Total Pages: 214
Release: 2021-02-08
Genre: Science
ISBN: 9781788019811

Download Surface Chemistry of Colloidal Nanocrystals Book in PDF, Epub and Kindle

The chemistry of nanomaterials has developed considerably in the past two decades, and concepts that have emerged from these developments are now well established. The surface modification of nanoparticles is a subject of intense research interest given its importance for many applications across a number of disciplines. This comprehensive guide is the first to be devoted to the surface chemistry of inorganic nanocrystals. Following an introduction to the physical chemistry of surfaces, chapters cover topics such as the surface modification of nanoparticles, water compatible, polymer-based, and inorganic nanocomposites, as well as relevant applications in catalysis, biotechnology and nanomedicine. Highlighting recent advances, Surface Chemistry of Colloidal Nanocrystals provides an integrated approach to chemical aspects related to the surface of nanocrystals. Written by prestigious scientists, this will be a useful resource for students and researchers working in surface science, nanoscience and materials science as well as those interested in the applications of the nanomaterials in areas such as health science, biology, and environmental engineering.

Solution Processable Components for Organic Electronic Devices

Solution Processable Components for Organic Electronic Devices
Author: Beata Luszczynska,Krzysztof Matyjaszewski,Jacek Ulanski
Publsiher: John Wiley & Sons
Total Pages: 688
Release: 2019-06-07
Genre: Technology & Engineering
ISBN: 9783527814954

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Provides first-hand insights into advanced fabrication techniques for solution processable organic electronics materials and devices The field of printable organic electronics has emerged as a technology which plays a major role in materials science research and development. Printable organic electronics soon compete with, and for specific applications can even outpace, conventional semiconductor devices in terms of performance, cost, and versatility. Printing techniques allow for large-scale fabrication of organic electronic components and functional devices for use as wearable electronics, health-care sensors, Internet of Things, monitoring of environment pollution and many others, yet-to-be-conceived applications. The first part of Solution-Processable Components for Organic Electronic Devices covers the synthesis of: soluble conjugated polymers; solution-processable nanoparticles of inorganic semiconductors; high-k nanoparticles by means of controlled radical polymerization; advanced blending techniques yielding novel materials with extraordinary properties. The book also discusses photogeneration of charge carriers in nanostructured bulk heterojunctions and charge carrier transport in multicomponent materials such as composites and nanocomposites as well as photovoltaic devices modelling. The second part of the book is devoted to organic electronic devices, such as field effect transistors, light emitting diodes, photovoltaics, photodiodes and electronic memory devices which can be produced by solution-based methods, including printing and roll-to-roll manufacturing. The book provides in-depth knowledge for experienced researchers and for those entering the field. It comprises 12 chapters focused on: ? novel organic electronics components synthesis and solution-based processing techniques ? advanced analysis of mechanisms governing charge carrier generation and transport in organic semiconductors and devices ? fabrication techniques and characterization methods of organic electronic devices Providing coverage of the state of the art of organic electronics, Solution-Processable Components for Organic Electronic Devices is an excellent book for materials scientists, applied physicists, engineering scientists, and those working in the electronics industry.

Cellulose Science and Technology

Cellulose Science and Technology
Author: Thomas Rosenau,Antje Potthast,Johannes Hell
Publsiher: John Wiley & Sons
Total Pages: 480
Release: 2018-11-30
Genre: Technology & Engineering
ISBN: 9781119217633

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This book addresses both classic concepts and state-of-the-art technologies surrounding cellulose science and technology. Integrating nanoscience and applications in materials, energy, biotechnology, and more, the book appeals broadly to students and researchers in chemistry, materials, energy, and environmental science. • Includes contributions from leading cellulose scientists worldwide, with five Anselm Payen Cellulose Award winners and two Hayashi Jisuke Cellulose Award winners • Deals with a highly applicable and timely topic, considering the current activities in the fields of bioeconomies, biorefineries, and biomass utilization • Maximizes readership by combining fundamental science and application development

Colloidal Quantum Dot Light Emitting Diodes

Colloidal Quantum Dot Light Emitting Diodes
Author: Hong Meng
Publsiher: John Wiley & Sons
Total Pages: 405
Release: 2024-02-20
Genre: Technology & Engineering
ISBN: 9783527353279

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Explore all the core components for the commercialization of quantum dot light emitting diodes Quantum dot light emitting diodes (QDLEDs) are a technology with the potential to revolutionize solid-state lighting and displays. Due to the many applications of semiconductor nanocrystals, of which QDLEDs are an example, they also hold the potential to be adapted into other emerging semiconducting technologies. As a result, it is critical that the next generation of engineers and materials scientists understand these diodes and their latest developments. Colloidal Quantum Dot Light Emitting Diodes: Materials and Devices offers a comprehensive introduction to this subject and its most recent research advancements. Beginning with a summary of the theoretical foundations and the basic methods for chemically synthesizing colloidal semiconductor quantum dots, it identifies existing and future applications for these groundbreaking technologies. The result is tailored to produce a thorough understanding of this area of research. Colloidal Quantum Dot Light Emitting Diodes readers will also find: An author with decades of experience in the field of organic electronics Detailed discussion of topics including advanced display technologies, the patent portfolio and commercial considerations, and more Strategies and design techniques for improving device performance Colloidal Quantum Dot Light Emitting Diodes is ideal for material scientists, electronics engineers, inorganic and solid-state chemists, solid-state and semiconductor physicists, photochemists, and surface chemists, as well as the libraries that support these professionals.

Colloidal Quantum Dot Optoelectronics and Photovoltaics

Colloidal Quantum Dot Optoelectronics and Photovoltaics
Author: Gerasimos Konstantatos,Edward H. Sargent
Publsiher: Cambridge University Press
Total Pages: 329
Release: 2013-11-07
Genre: Science
ISBN: 9780521198264

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Captures the most up-to-date research in the field, written in an accessible style by the world's leading experts.

Semiconductor Nanocrystals

Semiconductor Nanocrystals
Author: Alexander L. Efros,D.J. Lockwood,Leonid Tsybeskov
Publsiher: Springer Science & Business Media
Total Pages: 277
Release: 2013-06-29
Genre: Technology & Engineering
ISBN: 9781475736779

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A physics book that covers the optical properties of quantum-confined semiconductor nanostructures from both the theoretical and experimental points of view together with technological applications. Topics to be reviewed include quantum confinement effects in semiconductors, optical adsorption and emission properties of group IV, III-V, II-VI semiconductors, deep-etched and self assembled quantum dots, nanoclusters, and laser applications in optoelectronics.

Chemistry of Organo hybrids

Chemistry of Organo hybrids
Author: Bernadette Charleux,Christophe Coperet,Emmanuel Lacote
Publsiher: John Wiley & Sons
Total Pages: 552
Release: 2015-01-23
Genre: Technology & Engineering
ISBN: 9781118870006

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This book provides readers with a one-stop entry into thechemistry of varied hybrids and applications, from a molecularsynthetic standpoint • Describes introduction and effect of organicstructures on specific support components (carbon-based materials,proteins, metals, and polymers). • Chapters cover hot topics including nanodiamonds,nanocrystals, metal-organic frameworks, peptide bioconjugates, andchemoselective protein modification • Describes analytical techniques, with pros and cons,to validate synthetic strategies • Edited by internationally-recognized chemists fromdifferent backgrounds (synthetic polymer chemistry, inorganicsurfaces and particles, and synthetic organic chemistry) to pulltogether diverse perspectives and approaches