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Semiconductor technologies continue to evolve and amaze us. New materials, new structures, new manufacturing tools, and new advancements in modelling and simulation form a breeding ground for novel high performance electronic and photonic devices. This book covers all aspects of semiconductor technology concerning materials, technological processes, and devices, including their modelling, design, integration, and manufacturing.
Xenes: 2D Synthetic Materials Beyond Graphene includes all the relevant information about Xenes thus far reported, focusing on emerging materials and new trends. The book's primary goal is to include full descriptions of each Xene type by leading experts in the area. Each chapter will provide key principles, theories, methods, experiments and potential applications. The book also reviews the key challenges for synthetic 2D materials such as characterization, modeling, synthesis, and integration strategies. This comprehensive book is suitable for materials scientists and engineers, physicists and chemists working in academia and R&D in industry. The discovery of silicene dates back to 2012. Since then, other Xenes were subsequently created with synthetic methods. The portfolio of Xenes includes different chemical elements of the periodic table and hence the related honeycomb-like lattices show a wealth of electronic and optical properties that can be successfully exploited for applications. Introduces the most important Xenes, including silicene, germanene, borophene, gallenene, phosphorene, and more Provides the fundamental principles, theories, experiments and applications for the most relevant synthetic 2D materials Addresses techniques for the characterization, synthesis and integration of synthetic 2D materials
Materials and technologies semiconductor and dielectric materials quantum heterostructures MS and MIS structures nanostructures and nanotubes, low dimensional structures organic electronics Structures and devices Si based heterostructure devices III V and III N heterostructure devices quantum and resonance devices, microwave devices, nanodevices lasers and photodetectors power electronics Characterization, modelling and simulation 2 D and 3 D process, structure and device simulation heterostructure device modelling structural, optical and electrical characterization of materials, structures and devices reliability evaluation and modelling Sensors and microsystems advanced concepts in lithography, plasma etching and deposition techniques design and fabrication surface and bulk micromachining micro(nano)mechanical structures, micro(nano)electro mechanical systems (MEMS, NEMS) SMART Sensors sensor characterization, modelling and simulation