Literature DB >> 19734927

Controlled ripple texturing of suspended graphene and ultrathin graphite membranes.

Wenzhong Bao1, Feng Miao, Zhen Chen, Hang Zhang, Wanyoung Jang, Chris Dames, Chun Ning Lau.   

Abstract

Graphene is nature's thinnest elastic material and displays exceptional mechanical and electronic properties. Ripples are an intrinsic feature of graphene sheets and are expected to strongly influence electronic properties by inducing effective magnetic fields and changing local potentials. The ability to control ripple structure in graphene could allow device design based on local strain and selective bandgap engineering. Here, we report the first direct observation and controlled creation of one- and two-dimensional periodic ripples in suspended graphene sheets, using both spontaneously and thermally generated strains. We are able to control ripple orientation, wavelength and amplitude by controlling boundary conditions and making use of graphene's negative thermal expansion coefficient (TEC), which we measure to be much larger than that of graphite. These results elucidate the ripple formation process, which can be understood in terms of classical thin-film elasticity theory. This should lead to an improved understanding of suspended graphene devices, a controlled engineering of thermal stress in large-scale graphene electronics, and a systematic investigation of the effect of ripples on the electronic properties of graphene.

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Year:  2009        PMID: 19734927     DOI: 10.1038/nnano.2009.191

Source DB:  PubMed          Journal:  Nat Nanotechnol        ISSN: 1748-3387            Impact factor:   39.213


  19 in total

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Authors:  Young-Kyun Kwon; Savas Berber; David Tománek
Journal:  Phys Rev Lett       Date:  2004-01-09       Impact factor: 9.161

2.  Two-dimensional gas of massless Dirac fermions in graphene.

Authors:  K S Novoselov; A K Geim; S V Morozov; D Jiang; M I Katsnelson; I V Grigorieva; S V Dubonos; A A Firsov
Journal:  Nature       Date:  2005-11-10       Impact factor: 49.962

3.  Phase-coherent transport in graphene quantum billiards.

Authors:  F Miao; S Wijeratne; Y Zhang; U C Coskun; W Bao; C N Lau
Journal:  Science       Date:  2007-09-14       Impact factor: 47.728

4.  Coulomb interaction, ripples, and the minimal conductivity of graphene.

Authors:  Igor F Herbut; Vladimir Juricić; Oskar Vafek
Journal:  Phys Rev Lett       Date:  2008-01-28       Impact factor: 9.161

5.  Giant intrinsic carrier mobilities in graphene and its bilayer.

Authors:  S V Morozov; K S Novoselov; M I Katsnelson; F Schedin; D C Elias; J A Jaszczak; A K Geim
Journal:  Phys Rev Lett       Date:  2008-01-07       Impact factor: 9.161

6.  Finite temperature lattice properties of graphene beyond the quasiharmonic approximation.

Authors:  K V Zakharchenko; M I Katsnelson; A Fasolino
Journal:  Phys Rev Lett       Date:  2009-01-29       Impact factor: 9.161

7.  Effective elastic mechanical properties of single layer graphene sheets.

Authors:  F Scarpa; S Adhikari; A Srikantha Phani
Journal:  Nanotechnology       Date:  2009-01-15       Impact factor: 3.874

8.  Temperature-dependent transport in suspended graphene.

Authors:  K I Bolotin; K J Sikes; J Hone; H L Stormer; P Kim
Journal:  Phys Rev Lett       Date:  2008-08-25       Impact factor: 9.161

9.  Experimental observation of the quantum Hall effect and Berry's phase in graphene.

Authors:  Yuanbo Zhang; Yan-Wen Tan; Horst L Stormer; Philip Kim
Journal:  Nature       Date:  2005-11-10       Impact factor: 49.962

10.  Measurement of the elastic properties and intrinsic strength of monolayer graphene.

Authors:  Changgu Lee; Xiaoding Wei; Jeffrey W Kysar; James Hone
Journal:  Science       Date:  2008-07-18       Impact factor: 47.728

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  60 in total

1.  Dimensional crossover of thermal transport in few-layer graphene.

Authors:  Suchismita Ghosh; Wenzhong Bao; Denis L Nika; Samia Subrina; Evghenii P Pokatilov; Chun Ning Lau; Alexander A Balandin
Journal:  Nat Mater       Date:  2010-05-09       Impact factor: 43.841

2.  Wetting: Unobtrusive graphene coatings.

Authors:  Frieder Mugele
Journal:  Nat Mater       Date:  2012-02-21       Impact factor: 43.841

3.  Fast diffusion of water nanodroplets on graphene.

Authors:  Ming Ma; Gabriele Tocci; Angelos Michaelides; Gabriel Aeppli
Journal:  Nat Mater       Date:  2015-10-19       Impact factor: 43.841

4.  Performance of monolayer graphene nanomechanical resonators with electrical readout.

Authors:  Changyao Chen; Sami Rosenblatt; Kirill I Bolotin; William Kalb; Philip Kim; Ioannis Kymissis; Horst L Stormer; Tony F Heinz; James Hone
Journal:  Nat Nanotechnol       Date:  2009-09-20       Impact factor: 39.213

5.  Study on wrinkling in graphene under gradient shear by molecular dynamics simulation.

Authors:  Jianzhang Huang; Qiang Han
Journal:  J Mol Model       Date:  2015-01-31       Impact factor: 1.810

6.  Wrinkled, wavelength-tunable graphene-based surface topographies for directing cell alignment and morphology.

Authors:  Zhongying Wang; Daniel Tonderys; Susan E Leggett; Evelyn Kendall Williams; Mehrdad T Kiani; Ruben Spitz Steinberg; Yang Qiu; Ian Y Wong; Robert H Hurt
Journal:  Carbon N Y       Date:  2016-02-01       Impact factor: 9.594

7.  Rippling ultrafast dynamics of suspended 2D monolayers, graphene.

Authors:  Jianbo Hu; Giovanni M Vanacore; Andrea Cepellotti; Nicola Marzari; Ahmed H Zewail
Journal:  Proc Natl Acad Sci U S A       Date:  2016-10-10       Impact factor: 11.205

8.  Ripple-modulated electronic structure of a 3D topological insulator.

Authors:  Yoshinori Okada; Wenwen Zhou; D Walkup; Chetan Dhital; Stephen D Wilson; V Madhavan
Journal:  Nat Commun       Date:  2012       Impact factor: 14.919

9.  A hydrothermal anvil made of graphene nanobubbles on diamond.

Authors:  Candy Haley Yi Xuan Lim; Anastassia Sorkin; Qiaoliang Bao; Ang Li; Kai Zhang; Milos Nesladek; Kian Ping Loh
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

10.  Detecting the mass and position of an adsorbate on a drum resonator.

Authors:  Y Zhang; Y P Zhao
Journal:  Proc Math Phys Eng Sci       Date:  2014-10-08       Impact factor: 2.704

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