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Raman spectrum of graphene and graphene layers.

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TLDR
This work shows that graphene's electronic structure is captured in its Raman spectrum that clearly evolves with the number of layers, and allows unambiguous, high-throughput, nondestructive identification of graphene layers, which is critically lacking in this emerging research area.
Abstract
Graphene is the two-dimensional building block for carbon allotropes of every other dimensionality We show that its electronic structure is captured in its Raman spectrum that clearly evolves with the number of layers The D peak second order changes in shape, width, and position for an increasing number of layers, reflecting the change in the electron bands via a double resonant Raman process The G peak slightly down-shifts This allows unambiguous, high-throughput, nondestructive identification of graphene layers, which is critically lacking in this emerging research area

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Effects of charge transfer interaction of graphene with electron donor and acceptor molecules examined using Raman spectroscopy and cognate techniques

TL;DR: In this paper, the effects of the interaction of few-layer graphene with electron donor and acceptor molecules have been investigated by employing Raman spectroscopy, and the results compared with those from electrochemical doping.
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Three-dimensional graphene foams promote osteogenic differentiation of human mesenchymal stem cells

TL;DR: Three-dimensional graphene foams are employed as culture substrates for human mesenchymal stem cells and evidence is provided that these materials can maintain stem cell viability and promote osteogenic differentiation.
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Evolution of Raman spectra in nitrogen doped graphene

TL;DR: In this article, the evolution of Raman spectra in nitrogen doped graphene (NG) was studied and it was found that the defects/nitrogen dopants in NG are not homogenous.
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Graphene–carbonyl iron cross-linked composites with excellent electromagnetic wave absorption properties

TL;DR: In this article, reduced graphene oxide-spherical carbonyl iron composites (RGO-SCI) have been successfully fabricated through a facile wet chemical method, and an apparent improvement of impedance matching in electromagnetic wave absorption could be found through the combination of RGO and SCI.
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Large single crystals of graphene on melted copper using chemical vapour deposition

TL;DR: In this article, a simple one-step method is presented for synthesizing large single crystal graphene domains on melted copper using atmospheric pressure chemical vapour deposition (CVD), achieved by performing the reaction above the melting point of copper (1090 °C) and using a molybdenum support to prevent the copper from dewetting.
References
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疟原虫var基因转换速率变化导致抗原变异[英]/Paul H, Robert P, Christodoulou Z, et al//Proc Natl Acad Sci U S A

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