Enabling Meaningful CVD Graphene R&D

Enabling Meaningful CVD Graphene R&D

Traditional chemical vapor deposition (CVD) graphene production – seen primarily in the form of quartz tube furnaces - has been inadequate to support meaningful CVD graphene R&D – and has thereby been a roadblock in CVD graphene’s progress toward...

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CVD Graphene Biosensors White Paper

CVD Graphene Biosensors White Paper

In the above white paper, we analyze the operating mechanism and application potential of CVD graphene field-effect transistors (GFETs) in biosensors. We also present the latest advancements in our graphene production and graphene transfer processes that have played...

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CVD Graphene Potential in Sensors

CVD Graphene Potential in Sensors

Schematic of graphene field-effect transistor (GFET) after functionalization with receptors (top) and when interacting with analytes (bottom). What Makes CVD Graphene Suitable for Sensors? CVD graphene is an atomically thin layer of carbon atoms arranged in a...

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CVD Graphene – Beyond the Hype

CVD Graphene – Beyond the Hype

The History Behind the Graphene Hype Graphene and hype have gone hand in hand ever since its discovery back in 2004. The hype peaked around 2010 when Dr. Geim and Dr. Novoselov, the scientists who characterized it successfully, won a Nobel Prize in Physics for their...

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