Properties of Synthetic Two-Dimensional Materials and Heterostructures

This thesis represents a significant advance in our understanding of the synthesis and propertiesof two-dimensional (2D) materials. The author's work breaks new ground in the understanding of a number of 2D crystals, including atomically thin transition metal dichalcogenides, graphene, and thei...

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1. Verfasser: Lin, Yu-Chuan (VerfasserIn)
Format: Elektronisch E-Book
Sprache:Englisch
Veröffentlicht: Cham : Springer International Publishing, 2018.
Ausgabe:1st ed. 2018.
Schriftenreihe:Springer Theses, Recognizing Outstanding Ph.D. Research,
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ISBN:9783030003326
ISSN:2190-5053
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100 1 |a Lin, Yu-Chuan.  |4 aut 
245 1 0 |a Properties of Synthetic Two-Dimensional Materials and Heterostructures  |h [electronic resource] /  |c by Yu-Chuan Lin. 
250 |a 1st ed. 2018. 
260 1 |a Cham :  |b Springer International Publishing,  |c 2018. 
300 |a XV, 141 p. 76 illus. in color.  |b online resource. 
490 1 |a Springer Theses, Recognizing Outstanding Ph.D. Research,  |x 2190-5053 
500 |a Physics and Astronomy  
505 0 |a Chapter1. Two-Dimensional Materials -- Chapter2. Synthesis and Properties of 2D Semiconductors -- Chapter3. Properties of Atomically Thin WSe2 Grown via Metal-Organic Chemical Vapor Deposition -- Chapter4. Direct Synthesis of van der Waals Solids -- Chapter5. Atomically Thin Heterostructures Based on Monolayer WSe2 and Graphene -- Chapter6. Tuning Electronic Transport in WSe2-Graphene Junction -- Chapter7. Atomically Thin Resonant Tunnel Diodes. 
516 |a text file PDF 
520 |a This thesis represents a significant advance in our understanding of the synthesis and propertiesof two-dimensional (2D) materials. The author's work breaks new ground in the understanding of a number of 2D crystals, including atomically thin transition metal dichalcogenides, graphene, and their heterostructures, that are technologically important to next-generation electronics. In addition to critical new results on the direct growth of 2D heterostructures, it also details growth mechanisms, surface science, and device applications of "epi-grade" 2D semiconductors, which are essential to low-power electronics, as well as for extending Moore's law. Most importantly, it provides an effective alternative to mechanically exfoliate 2D layers for practical applications. . 
650 0 |a Semiconductors. 
650 0 |a Nanotechnology. 
650 0 |a Optical materials. 
650 0 |a Electronic materials. 
650 0 |a Materials-Surfaces. 
650 0 |a Thin films. 
650 0 |a Crystallography. 
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