Download e-book for kindle: 2D Materials by Francesca Iacopi, John J. Boeckl and Chennupati Jagadish

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By Francesca Iacopi, John J. Boeckl and Chennupati Jagadish (Eds.)

2D Materials comprises the most recent details at the present frontier of nanotechnology, the thinnest kind of fabrics to ever happen in nature. a bit over 10 years in the past, this was once a totally unknown zone, no longer proposal to exist. besides the fact that, in view that then, graphene has been remoted and acclaimed, and an entire different type of atomically skinny fabrics, ruled via floor results and displaying thoroughly unforeseen and notable houses has been created.

This e-book is perfect for quite a few readers, together with these looking a high-level evaluate or a truly exact and important research. No nanotechnologist can at the moment forget this new type of materials.

  • Presents one of many first unique books in this topic of nanotechnology
  • Contains contributions from a good line-up of authoritative participants that compile thought and experiments
  • Ideal for various readers, together with these looking a high-level evaluate or a truly special and important analysis

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165502. , 2006. Crystal structure prediction using ab initio evolutionary techniques: principles and applications. J. Chem. Phys. 124 (24), 244704. , 2010. Silicon nanosheets and their self-assembled regular stacking structure. J. Am. Chem. Soc. 132 (8), 2710–2718. org/10. 1021/ja908827z. , 2009. Data mining and accelerated electronic structure theory as a tool in the search for new functional materials. Comput. Mater. Sci. 44, 1042–1049. , 1996. Generalized gradient approximation made simple. Phys.

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2010. The search for strong topological insulators. 4838. , 2013. Possible high-temperature superconductors predicted from electronic structure and data-filtering algorithms. Comput. Mater. Sci. 67, 282–286. , 2012. First principles study of twodimensional early transition metal carbides. MRS Commun. 2 (4), 133–137. org/article_S2159685912000250. , 2005. Van der Waals density functional theory with applications. Int. J. Quantum Chem. 101 (5), 599–610. 20315. , 2014. Electronic and optical properties of 2D graphene-like compounds titanium carbides and nitrides: DFT calculations.

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