Molecular Modelling and Synthesis of Nanomaterials: Applications in Carbon- and Boron-based Nanotechnology
Molecular Modelling and Synthesis of Nanomaterials: Applications in Carbon- and Boron-based Nanotechnology
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- More about Molecular Modelling and Synthesis of Nanomaterials: Applications in Carbon- and Boron-based Nanotechnology
This book explores the use of computational modelling and numerical simulation tools to predict and confirm the development of nanostructures, focusing on alkali metal clusters and boron and carbon. It provides a comprehensive overview of the theoretical methods and experimental techniques involved and discusses potential applications in nanotechnology.
Format: Paperback / softback
Length: 594 pages
Publication date: 15 July 2021
Publisher: Springer Nature Switzerland AG
This comprehensive book delves into the realm of nanomaterials, presenting a captivating synthesis of computational modelling and numerical simulation techniques, alongside modern experimental validations. It begins by providing a foundational overview of theoretical methods, seamlessly transitioning into a comprehensive theoretical and experimental exploration of the formation of alkali metal clusters into nanostructures. The book further delves into the captivating world of atomic clusters and nanostructures, with a particular focus on boron and carbon. It intricately examines the one-, two-, and three-dimensional structures of these elements, shedding light on their vast potential applications in the field of nanotechnology. From the realm of nanocoating and nanosensing to the realm of nanobatteries with remarkable borophene capacity, this book serves as an indispensable reference resource for materials scientists engaged in this cutting-edge research field. Through its broad discussion of computational modelling and its specific applications to boron and carbon, this book offers a profound understanding of the intricate interplay between theory and experimentation in the realm of nanomaterials.
Weight: 920g
Dimension: 235 x 155 (mm)
ISBN-13: 9783030327286
Edition number: 1st ed. 2020
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