نتایج جستجو برای: graphene nanoribbons

تعداد نتایج: 51339  

2018
Jingcheng Li Nestor Merino-Díez Eduard Carbonell-Sanromà Manuel Vilas-Varela Dimas G de Oteyza Diego Peña Martina Corso Jose Ignacio Pascual

We report on the construction and magnetic characterization of a fully functional hybrid molecular system composed of a single magnetic porphyrin molecule bonded to graphene nanoribbons with atomically precise contacts. We use on-surface synthesis to direct the hybrid creation by combining two molecular precursors on a gold surface. High-resolution imaging with a scanning tunneling microscope f...

Journal: :Nature materials 2011
A Chuvilin E Bichoutskaia M C Gimenez-Lopez T W Chamberlain G A Rance N Kuganathan J Biskupek U Kaiser A N Khlobystov

The ability to tune the properties of graphene nanoribbons (GNRs) through modification of the nanoribbon's width and edge structure widens the potential applications of graphene in electronic devices. Although assembly of GNRs has been recently possible, current methods suffer from limited control of their atomic structure, or require the careful organization of precursors on atomically flat su...

Journal: :Nano letters 2009
Jesse M Kinder Jonathan J Dorando Haitao Wang Garnet Kin-Lic Chan

We describe the results of a theoretical study of transport through gated metallic graphene nanoribbons using a nonequilibrium Green function method. Although analogies with quantum field theory predict perfect transmission of chiral fermions through gated regions in one dimension, we find perfect reflection of chiral fermions in armchair ribbons for specific configurations of the gate. This ef...

2011
A. V. Rozhkov Yury P. Bliokh Valentin Freilikher Franco Nori

This brief review discusses electronic properties of mesoscopic graphene-based structures. These allow controlling the confinement and transport of charge and spin; thus, they are of interest not only for fundamental research, but also for applications. The graphenerelated topics covered here are: edges, nanoribbons, quantum dots, pn-junctions, pnpstructures, and quantum barriers and waveguides...

Journal: :Nature electronics 2023

Abstract Graphene nanoribbons synthesized using bottom-up approaches can be structured with atomic precision, allowing their physical properties to precisely controlled. For applications in quantum technology, the manipulation of single charges, spins or photons is required. However, achieving this at level graphene experimentally challenging due difficulty contacting individual nanoribbons, pa...

2014
D. Wang Z. Zhang Z. Zhu B. Liang

The magnetic structure and magnetic transport properties of hydrogen-passivated sawtooth zigzag-edge graphene nanoribbons (STGNRs) are investigated theoretically. It is found that all-sized ground-state STGNRs are ferromagnetic and always feature magnetic semiconductor properties, whose spin splitting energy gap E(g) changes periodically with the width of STGNRs. More importantly, for the STGNR...

2013
Jan Bundesmann Ming-Hao Liu Klaus Richter

We investigate spin transport in diffusive graphene nanoribbons with both clean and rough zigzag edges, and long-range potential fluctuations. The long-range fields along the ribbon edges cause the local doping to come close to the charge neutrality point forming p-n junctions with localized magnetic moments, similar to the predicted magnetic edge of clean zigzag graphene nanoribbons. The resul...

Journal: :Nanoscale 2014
Gufeng Zhang Xiaoguang Li Guangfen Wu Jie Wang Dimitrie Culcer Efthimios Kaxiras Zhenyu Zhang

Topological insulators are bulk insulators that possess robust chiral conducting states along their interfaces with normal insulators. A tremendous research effort has recently been devoted to topological insulator-based heterostructures, in which conventional proximity effects give rise to a series of exotic physical phenomena. Here we establish the potential existence of topological proximity...

2009
J Wurm

We study the conductance through two types of graphene nanostructures: nanoribbon junctions in which the width changes from wide to narrow, and curved nanoribbons. In the wide-narrow structures, substantial reflection occurs from the wide-narrow interface, in contrast to the behavior of the much studied electron gas waveguides. In the curved nanoribbons, the conductance is very sensitive to det...

1990
J.-H. Kim K. Sato R. Saito

We review recent studies of coherent phonons (CPs) corresponding to the radial breathing mode (RBM) and G-mode in single-wall carbon nanotubes (SWCNTs) and graphene. Because of the bandgap-diameter relationship, RBM-CPs cause bandgap oscillations in SWCNTs, modulating interband transitions at terahertz frequencies. Interband resonances enhance CP signals, allowing for chirality determination. U...

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