نتایج جستجو برای: 3d graphene

تعداد نتایج: 237717  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Kohei Kanetani Katsuaki Sugawara Takafumi Sato Ryota Shimizu Katsuya Iwaya Taro Hitosugi Takashi Takahashi

Success in isolating a 2D graphene sheet from bulky graphite has triggered intensive studies of its physical properties as well as its application in devices. Graphite intercalation compounds (GICs) have provided a platform of exotic quantum phenomena such as superconductivity, but it is unclear whether such intercalation is feasible in the thinnest 2D limit (i.e., bilayer graphene). Here we re...

Journal: :Nanoscale 2015
Jun Lei Qi Xu Wang Jing Huang Lin Fu Zhang Ji Cai Feng Wei-Dong Fei

Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited its practical application. Here we report a way to simultaneously realize the 3D structure and good wettability in vertically-oriented few-layered graphene (VFG) grown by plasma-enhanced chemical vapor deposition. Based on scanning and t...

Journal: :Chemical communications 2014
Sreekuttan M Unni Rajith Illathvalappil Pranav K Gangadharan Siddheswar N Bhange Sreekumar Kurungot

Layer-separated 3D nitrogen doped graphene (NG) with an accessible interstitial surface and modulated activity characteristics for oxygen reduction in acidic medium could be prepared by wrapping NG sheets on in situ generated carbon nitride (CNx) tetrapods.

2017
Jinzhao Huang Ke Fu Xiaolong Deng Nannan Yao Mingzhi Wei

TiO2 NSAs/graphene/Cu2O was fabricated on the carbon fiber to use as photocastalysts by coating Cu2O on the graphene (G) decorated TiO2 nanosheet arrays (NSAs). The research focus on constructing the composite structure and investigating the reason to enhance the photocatalytic ability. The morphological, structural, and photocatalytic properties of the as-synthesized products were characterize...

2017
Jicheng Wang Xiaosai Wang Hongyan Shao Zheng-Da Hu Gaige Zheng Feng Zhang

Plasmonically induced transparency (PIT) in a multicavity-coupled graphene-based waveguide system is investigated theoretically and numerically. By using the finite element method (FEM), the multiple mode effect can be achieved, and blue shift is exhibited by tunable altering the chemical potential of the monolayer graphene. We find that the increasing number of the graphene rectangle cavity (G...

Journal: :Nature materials 2012
Shanshan Chen Qingzhi Wu Columbia Mishra Junyong Kang Hengji Zhang Kyeongjae Cho Weiwei Cai Alexander A Balandin Rodney S Ruoff

In addition to its exotic electronic properties graphene exhibits unusually high intrinsic thermal conductivity. The physics of phonons--the main heat carriers in graphene--has been shown to be substantially different in two-dimensional (2D) crystals, such as graphene, from in three-dimensional (3D) graphite. Here, we report our experimental study of the isotope effects on the thermal propertie...

Journal: :ACS nano 2013
Joshua T Smith Aaron D Franklin Damon B Farmer Christos D Dimitrakopoulos

Performance of graphene electronics is limited by contact resistance associated with the metal-graphene (M-G) interface, where unique transport challenges arise as carriers are injected from a 3D metal into a 2D-graphene sheet. In this work, enhanced carrier injection is experimentally achieved in graphene devices by forming cuts in the graphene within the contact regions. These cuts are orient...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Jian Yu Huang Feng Ding Boris I Yakobson Ping Lu Liang Qi Ju Li

We induced sublimation of suspended few-layer graphene by in situ Joule-heating inside a transmission electron microscope. The graphene sublimation fronts consisted of mostly {1100} zigzag edges. Under appropriate conditions, a fractal-like "coastline" morphology was observed. Extensive multiple-layer reconstructions at the graphene edges led to the formation of unique carbon nanostructures, su...

2010
Hye Jin Park Viera Skákalová Jannik Meyer Dong Su Lee Takayuki Iwasaki Chris Bumby Siegmar Roth

1 Max Planck Institute for Solid State Research, Heisenbergstraße 1, 70569 Stuttgart, Germany 2 Danubia Nanotech s.r.o., Ilkovičova 3, 84104 Bratislava, Slovakia 3 Electron Microscopy Group of Materials Science, University of Ulm, Albert Einstein Allee 11, 89069 Ulm, Germany 4 The MacDiarmid Institute for Advanced Materials and Nanotechnology, Victoria University of Wellington, New Zealand 5 Sc...

2017
M. Akbari H. He J. Juuti M. M. Tentzeris J. Virkki L. Ukkonen Yizhu Shen

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