Synthesis and Modification of Nanostructured Thin Films

Synthesis and Modification of Nanostructured Thin Films
Author :
Publisher : MDPI
Total Pages : 276
Release :
ISBN-10 : 9783039284542
ISBN-13 : 3039284541
Rating : 4/5 (42 Downloads)

Synopsis Synthesis and Modification of Nanostructured Thin Films by : Ion N. Mihailescu

The Special Issue “Synthesis and Modification of Nanostructured Thin Films” highlights the recent progress in thin film synthesis/modification and characterization. New methods are reviewed for the synthesis and/or modification of thin films based on laser, magnetron, chemical, and other techniques. The obtained thin nanostructures are characterized by complex and complementary techniques. We think that most of proposed methods can be directly applied in production, but some others still need further elaboration for long-term prospective applications in lasers, optics, materials, electronics, informatics, telecommunications, biology, medicine, and probably many other domains. The Guest Editor and the MDPI staff are therefore pleased to offer this Special Issue to interested readers, including graduate and PhD students as well as postdoctoral researchers, but also to the entire community interested in the field of nanomaterials. We share the conviction that this can serve as a useful tool for updating the literature, but also to aid in the conception of new production and/or research programs. There is plenty of room for further dedicated R&D advances based on new instruments and materials under development.

Synthesis and Modification of Nanostructured Thin Films

Synthesis and Modification of Nanostructured Thin Films
Author :
Publisher :
Total Pages : 276
Release :
ISBN-10 : 303928455X
ISBN-13 : 9783039284559
Rating : 4/5 (5X Downloads)

Synopsis Synthesis and Modification of Nanostructured Thin Films by : Ion N. Mihailescu

The Special Issue “Synthesis and Modification of Nanostructured Thin Films” highlights the recent progress in thin film synthesis/modification and characterization. New methods are reviewed for the synthesis and/or modification of thin films based on laser, magnetron, chemical, and other techniques. The obtained thin nanostructures are characterized by complex and complementary techniques. We think that most of proposed methods can be directly applied in production, but some others still need further elaboration for long-term prospective applications in lasers, optics, materials, electronics, informatics, telecommunications, biology, medicine, and probably many other domains. The Guest Editor and the MDPI staff are therefore pleased to offer this Special Issue to interested readers, including graduate and PhD students as well as postdoctoral researchers, but also to the entire community interested in the field of nanomaterials. We share the conviction that this can serve as a useful tool for updating the literature, but also to aid in the conception of new production and/or research programs. There is plenty of room for further dedicated R&D advances based on new instruments and materials under development.

Nanostructured Thin Films

Nanostructured Thin Films
Author :
Publisher : Elsevier
Total Pages : 334
Release :
ISBN-10 : 9780081025734
ISBN-13 : 0081025734
Rating : 4/5 (34 Downloads)

Synopsis Nanostructured Thin Films by : Maria Benelmekki

Nanostructured Thin Films: Fundamentals and Applications presents an overview of the synthesis and characterization of thin films and their nanocomposites. Both vapor phase and liquid phase approaches are discussed, along with the methods that are sufficiently attractive for large-scale production. Examples of applications in clean energy, sensors, biomedicine, anticorrosion and surface modification are also included. As the applications of thin films in nanomedicine, cell phones, solar cell-powered devices, and in the protection of structural materials continues to grow, this book presents an important research reference for anyone seeking an informed overview on their structure and applications. Shows how thin films are being used to create more efficient devices in the fields of medicine and energy harvesting Discusses how to alter the design of nanostructured thin films by vapor phase and liquid phase methods Explores how modifying the structure of thin films for specific applications enhances their performance

Chemically Deposited Nanocrystalline Metal Oxide Thin Films

Chemically Deposited Nanocrystalline Metal Oxide Thin Films
Author :
Publisher : Springer Nature
Total Pages : 926
Release :
ISBN-10 : 9783030684624
ISBN-13 : 3030684628
Rating : 4/5 (24 Downloads)

Synopsis Chemically Deposited Nanocrystalline Metal Oxide Thin Films by : Fabian I. Ezema

This book guides beginners in the areas of thin film preparation, characterization, and device making, while providing insight into these areas for experts. As chemically deposited metal oxides are currently gaining attention in development of devices such as solar cells, supercapacitors, batteries, sensors, etc., the book illustrates how the chemical deposition route is emerging as a relatively inexpensive, simple, and convenient solution for large area deposition. The advancement in the nanostructured materials for the development of devices is fully discussed.

Nanostructured Surfaces and Thin Films Synthesis by Physical Vapor Deposition

Nanostructured Surfaces and Thin Films Synthesis by Physical Vapor Deposition
Author :
Publisher : MDPI
Total Pages : 178
Release :
ISBN-10 : 9783036503943
ISBN-13 : 3036503943
Rating : 4/5 (43 Downloads)

Synopsis Nanostructured Surfaces and Thin Films Synthesis by Physical Vapor Deposition by : Rafael Alvarez

This Special Issue deals with the synthesis of nanostructured surfaces and thin films by means of physical vapor deposition techniques such as pulsed laser deposition, magnetron sputtering, HiPIMS, or e-beam evaporation, among others. The nanostructuration of the surface modifies the way a material interacts with the environment, changing its optical, mechanical, electrical, tribological, or chemical properties. This can be applied in the development of photovoltaic cells, tribological coatings, optofluidic sensors, or biotechnology to name a few. This issue includes research presenting novel or improved applications of nanostructured thin films, such as photovoltaic solar cells, thin-film transistors, antibacterial coatings or chemical and biological sensors, while also studying the nanostructuration mechanisms, from a fundamental point of view, that produce rods, columns, helixes or hexagonal grids at the nanoscale.

Materials Processing for Production of Nanostructured Thin Films

Materials Processing for Production of Nanostructured Thin Films
Author :
Publisher : MDPI
Total Pages : 132
Release :
ISBN-10 : 9783036510880
ISBN-13 : 3036510885
Rating : 4/5 (80 Downloads)

Synopsis Materials Processing for Production of Nanostructured Thin Films by : Keith J. Stine

Thin films are important in many of the technologies used every day, impacting major markets for energy, medicine, and coatings. Scientists and engineers have been producing thin films on a wide range of surfaces for many decades but now have begun to explore giving these films new and controlled structures at the nanometer scale. These efforts are part of the new horizons opened by the field of nanoscience and impart novel structures and properties to these thin films. This book covers some of the methods for making these nanostructured thin films and their applications in areas impacting on health and energy usage.

Advances in Thin Films, Nanostructured Materials, and Coatings

Advances in Thin Films, Nanostructured Materials, and Coatings
Author :
Publisher : Springer
Total Pages : 380
Release :
ISBN-10 : 9789811361333
ISBN-13 : 9811361339
Rating : 4/5 (33 Downloads)

Synopsis Advances in Thin Films, Nanostructured Materials, and Coatings by : Alexander D. Pogrebnjak

This book highlights the latest advances in chemical and physical methods for thin-film deposition and surface engineering, including ion- and plasma-assisted processes, focusing on explaining the synthesis/processing–structure–properties relationship for a variety of thin-film systems. It covers topics such as advances in thin-film synthesis; new thin-film materials: diamond-like films, granular alloys, high-entropy alloys, oxynitrides, and intermetallic compounds; ultra-hard, wear- and oxidation-resistant and multifunctional coatings; superconducting, magnetic, semiconducting, and dielectric films; electrochemical and electroless depositions; thin-film characterization and instrumentation; and industrial applications.

Nanostructured Thin Films and Surfaces

Nanostructured Thin Films and Surfaces
Author :
Publisher :
Total Pages : 431
Release :
ISBN-10 : OCLC:702677205
ISBN-13 :
Rating : 4/5 (05 Downloads)

Synopsis Nanostructured Thin Films and Surfaces by : Challa S. S. R. Kumar

Design and Development of Nanostructured Thin Films

Design and Development of Nanostructured Thin Films
Author :
Publisher : MDPI
Total Pages : 386
Release :
ISBN-10 : 9783039287383
ISBN-13 : 3039287389
Rating : 4/5 (83 Downloads)

Synopsis Design and Development of Nanostructured Thin Films by : Antonella Macagnano

Due to their unique size-dependent physicochemical properties, nanostructured thin films are used in a wide range of applications from smart coating and drug delivery to electrocatalysis and highly-sensitive sensors. Depending on the targeted application and the deposition technique, these materials have been designed and developed by tuning their atomic-molecular 2D- and/or 3D-aggregation, thickness, crystallinity, and porosity, having effects on their optical, mechanical, catalytic, and conductive properties. Several open questions remain about the impact of nanomaterial production and use on environment and health. Many efforts are currently being made not only to prevent nanotechnologies and nanomaterials from contributing to environmental pollution but also to design nanomaterials to support, control, and protect the environment. This Special Issue aims to cover the recent advances in designing nanostructured films focusing on environmental issues related to their fabrication processes (e.g., low power and low cost technologies, the use of environmentally friendly solvents), their precursors (e.g., waste-recycled, bio-based, biodegradable, and natural materials), their applications (e.g., controlled release of chemicals, mimicking of natural processes, and clean energy conversion and storage), and their use in monitoring environment pollution (e.g., sensors optically- or electrically-sensitive to pollutants)

Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes

Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes
Author :
Publisher : Springer
Total Pages : 338
Release :
ISBN-10 : 9789401776165
ISBN-13 : 9401776164
Rating : 4/5 (65 Downloads)

Synopsis Non-Classical Crystallization of Thin Films and Nanostructures in CVD and PVD Processes by : Nong Moon Hwang

This book provides a comprehensive introduction to a recently-developed approach to the growth mechanism of thin films and nanostructures via chemical vapour deposition (CVD). Starting from the underlying principles of the low pressure synthesis of diamond films, it is shown that diamond growth occurs not by individual atoms but by charged nanoparticles. This newly-discovered growth mechanism turns out to be general to many CVD and some physical vapor deposition (PVD) processes. This non-classical crystallization is a new paradigm of crystal growth, with active research taking place on growth in solution, especially in biomineralization processes. Established understanding of the growth of thin films and nanostructures is based around processes involving individual atoms or molecules. According to the author’s research over the last two decades, however, the generation of charged gas phase nuclei is shown to be the rule rather than the exception in the CVD process, and charged gas phase nuclei are actively involved in the growth of films or nanostructures. This new understanding is called the theory of charged nanoparticles (TCN). This book describes how the non-classical crystallization mechanism can be applied to the growth of thin films and nanostructures in gas phase synthesis. Based on the author’s graduate lecture course, the book is aimed at senior undergraduate and graduate students and researchers in the field of thin film and nanostructure growth or crystal growth. It is hoped that a new understanding of the growth processes of thin films and nanostructures will reduce trial-and-error in research and in industrial fabrication processes.