Functional Nanostructured Interfaces for Environmental and Biomedical Applications

Functional Nanostructured Interfaces for Environmental and Biomedical Applications
Author :
Publisher : Elsevier
Total Pages : 414
Release :
ISBN-10 : 9780128144022
ISBN-13 : 0128144025
Rating : 4/5 (025 Downloads)

Book Synopsis Functional Nanostructured Interfaces for Environmental and Biomedical Applications by : Valentina Dinca

Download or read book Functional Nanostructured Interfaces for Environmental and Biomedical Applications written by Valentina Dinca and published by Elsevier. This book was released on 2019-05-17 with total page 414 pages. Available in PDF, EPUB and Kindle. Book excerpt: Functional Nanostructured Interfaces for Environmental and Biomedical Applications provides an overview on the characteristics of nanostructured interfaces and their processing technologies for a wide range of applications in the sensing, photocatalytic and bioengineering areas. The book focuses on the fundamentals of multifunctional nanostructured interfaces and their associated technologies, including versatile technologies, such as colloidal lithography, scanning probe techniques and laser nanostructuring, which can be used to obtain multifunctional 2D and 3D nanotextured interfaces. The book provides multidisciplinary chapters, summarizes the current status of the field, and covers important scientific and technological developments made over past decades. As such, it is an invaluable reference to those working in the design of novel nanostructured materials. - Covers emerging applications of nanostructured interfaces, with a focus on sensing, bio-related and environmental applications - Provides detailed and up-to-date overviews on the characteristics of nanostructured interfaces and their processing technologies, including materials from multifunctional graphene, to extremophile materials - Includes information about versatile technologies, such as colloidal lithography, scanning probe techniques and laser nanostructuring, all of which can all be used to obtain multifunctional 2D and 3D nanotextured interfaces


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