Graphene growth on silver

Researchers have demonstrated the first growth of graphene on a silver substrate. Unique wave-like electron scattering at the edges of the dendritic graphene also was observed for the first time.

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Scientists develop a more efficient and economical solar cell based on graphene and perovskite

Researchers have created and characterized a photovoltaic device based on a combination of titanium oxide and graphene as charge collector and perovskite as sunlight absorber. The device is manufactured at low temperatures and has a high efficiency.

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Graphenea Create an Industrialization Strategy Backed By Repsol

Graphenea, the Basque company dedicated to the production of graphene, is immersed in its industrialization strategy and will position in new markets after the investment of one million euros from Repsol and the Centre for the Industrial Technological Development (CDTI).

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Patterning graphene with DNA

Folded DNA templates allow researchers to precisely cut out graphene shapes, which could be used in electronic circuits.

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Grafoid Inc. and CapTherm Systems Inc. Joint Venture to Develop Next-Generation Graphene Cooling Systems for EV and LED Applications

Grafoid entered a joint venture development agreement with Coquitlam, British Columbia-based CapTherm Systems Inc. to develop and commercialize next generation, multiphase thermal management systems for electric vehicle battery and light emitting diode (LED) technologies.

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Chemically Modulated Graphene Diodes

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Nano Letters
DOI: 10.1021/nl400674k

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Tuning the Dirac Point in CVD-Grown Graphene through Solution Processed n-Type Doping with 2-(2-Methoxyphenyl)-1,3-dimethyl-2,3-dihydro-1H-benzoimidazole

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Nano Letters
DOI: 10.1021/nl303410g

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Probing from Both Sides: Reshaping the Graphene Landscape via Face-to-Face Dual-Probe Microscopy

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Nano Letters
DOI: 10.1021/nl3042799

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Electron microscopy uncovers ‘dancing’ silicon atoms in graphene

Scientists documented the atoms’ unique behavior by first trapping groups of silicon atoms, known as clusters, in a single-atom-thick sheet of carbon called graphene. The silicon clusters, composed of six atoms, were pinned in place by pores in the graphene sheet, allowing the team to directly image the material with a scanning transmission electron microscope.

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Titanium Dioxide Coating Improves Efficiency Of Graphene-Based Solar Cells

Solar Energy: The antireflective layer could lead to efficient, low-cost devices

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