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008 | 150903s2014 gw | o |||| 0|eng d | ||
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_a9783319028507 _99783319028507 |
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024 | 7 |
_a10.1007/9783319028507 _2doi |
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_a201509030915 _bVLOAD _c201405050334 _dVLOAD _y201402070854 _zstaff |
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_aMX-SnUAN _bspa _cMX-SnUAN _erda |
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050 | 4 | _aTA1750-1750.22 | |
100 | 1 |
_aWang, Zhiming M. _eeditor. _9303055 |
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245 | 1 | 0 |
_aMoS2 : _bMaterials, Physics, and Devices / _cedited by Zhiming M. Wang. |
264 | 1 |
_aCham : _bSpringer International Publishing : _bImprint: Springer, _c2014. |
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_axI, 291 páginas 171 ilustraciones, 152 ilustraciones en color. _brecurso en línea. |
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_atexto _btxt _2rdacontent |
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_acomputadora _bc _2rdamedia |
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_arecurso en línea _bcr _2rdacarrier |
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_aarchivo de texto _bPDF _2rda |
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_aLecture Notes in Nanoscale Science and Technology, _x2195-2159 ; _v21 |
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500 | _aSpringer eBooks | ||
505 | 0 | _aPreface -- Chapter 1: Progress on the Theoretical Study of Two-Dimensional MoS2 Monolayer and Nanoribbon -- Chapter 2: Electronic Structure of Exfoliated MoS2 -- Chapter 3: Tunable Electronic and Dielectric Properties of Molybdenum Disulfide -- Chapter 4: Ab initio study on MoS2 and its family: Chemical trend, band alignment, alloying and gap modulation -- Chapter 5: MoS2: A first principles perspective -- Chapter 6: Mechanical properties and electric field screening of atomically thin MoS2 crystals -- Chapter 7: Insights into vibrational and electronic properties of MoS2 using Raman, photoluminescence and transport studies -- Chapter 8: Optical characterization, low-temperature photoluminescence and photocarrier dynamics in MoS2 -- Chapter 9: The Application of nano-structure MoS2 materials in energy storage and conversion -- Chapter 10: Valley Polarization in Transition-metal Dichalcogenides by Optical Pumping -- Index. | |
520 | _aThis book reviews the structure and electronic, magnetic, and other properties of various MoS2 (Molybdenum disulfide) nanostructures, with coverage of synthesis, Valley polarization, spin physics, and other topics. MoS2 is an important, graphene-like layered nano-material that substantially extends the range of possible nanostructures and devices for nanofabrication. These materials have been widely researched in recent years, and have become an attractive topic for applications such as catalytic materials and devices based on field-effect transistors (FETs) and semiconductors. Chapters from leading scientists worldwide create a bridge between MoS2 nanomaterials and fundamental physics in order to stimulate readers' interest in the potential of these novel materials for device applications. Since MoS2 nanostructures are expected to be increasingly important for future developments in energy and other electronic device applications, this book can be recommended for Physics and Materials Science and Engineering departments and as reference for researchers in the field. Offers comprehensive coverage of novel MoS2 monolayer films and MoS2 nanomaterials Provides the keys to understanding the emerging area of MoS2 devices Written by leading experts in each research area | ||
590 | _aPara consulta fuera de la UANL se requiere clave de acceso remoto. | ||
710 | 2 |
_aSpringerLink (Servicio en línea) _9299170 |
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_iEdición impresa: _z9783319028491 |
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_uhttp://remoto.dgb.uanl.mx/login?url=http://dx.doi.org/10.1007/978-3-319-02850-7 _zConectar a Springer E-Books (Para consulta externa se requiere previa autentificación en Biblioteca Digital UANL) |
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