نتایج جستجو برای: graphene quantum dot

تعداد نتایج: 355607  

2013
Ho Seon Ahn Ji-Wook Jang Minsu Seol Ji Min Kim Dong-Jin Yun Chibeom Park Hyungdae Kim Duck Hyun Youn Jae Young Kim Gunyeop Park Su Cheong Park Jin Man Kim Dong In Yu Kijung Yong Moo Hwan Kim Jae Sung Lee

Self-assembled foam-like graphene (SFG) structures were formed using a simple nucleate boiling method, which is governed by the dynamics of bubble generation and departure in the graphene colloid solution. The conductivity and sheet resistance of the calcined (400°C) SFG film were 11.8 S·cm(-1) and 91.2 Ω□(-1), respectively, and were comparable to those of graphene obtained by chemical vapor de...

Alireza Abdykian Zahra Safi,

In this paper, by using a quantum hydrodynamic plasma model which incorporates the important quantum statistical pressure and electron diffraction force, we present the corrected plasmon dispersion relation for graphene which includes a k quantum term arising from the collective electron density wave interference effects (which  is integer and constant and k is wave vector). The longitudinal ...

2008
Björn Trauzettel Denis V. Bulaev Guido Burkard

The electron spin is a very promising candidate for a solid-state qubit [1]. Major experimental breakthroughs have been achieved in recent years using quantum dots formed in semiconductor heterostructures based on GaAs technology [2, 3, 4, 5]. In such devices, the major sources of spin decoherence have been identified as the spin-orbit interaction, coupling the spin to lattice vibrations [6, 7,...

2017
Runwei Mo David Rooney Kening Sun Hui Ying Yang

Flexible electrochemical energy storage devices have attracted extensive attention as promising power sources for the ever-growing field of flexible and wearable electronic products. However, the rational design of a novel electrode structure with a good flexibility, high capacity, fast charge-discharge rate and long cycling lifetimes remains a long-standing challenge for developing next-genera...

Journal: :World Journal of Condensed Matter Physics 2013

Journal: :Hosokawa Powder Technology Foundation ANNUAL REPORT 2017

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