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Graphene Functionalization and Enhancement

Learn about the how's and why's of functionalizing graphene materials from two firms that specialize in this unique process. Haydale and MITO Materials will provide insights into the use and applications of functionalized (enhanced) graphene materials. 


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MITO Materials


Achieving Successful Graphene Dispersions

Even the best graphene material in the world will fail if it is not dispersed correctly. This webinar will cover the sequence of issues and challenges that must be addressed in order to achieve a successful graphene dispersion. 


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Applied Graphene Materials


Graphene Oxide (GO) and Reduced Graphene Oxide (rGO) Materials and Applications

There are many forms of graphene, from CVD monolayer film to multilayer exfoliated graphene nano platelets to graphene oxides. Each different form of graphene has certain attributes which make them better suited for a given set of applications. 

In this webinar we will take a closer look at Graphene Oxide (GO) and reduced Graphene Oxide (rGO) materials to better understand their unique characteristics and the specific applications for which they are best suited. 



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Standard Graphene

William Blythe



CVD and Monolayer Graphene Production and Applications

Learn from experts at LG Electronics, General Graphene Corp. and GROLLTEX about commercial scale production, transfer and applications for CVD / monolayer graphene. 



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General Graphene


LG Electronics




The National Physical Laboratory (NPL) in the UK is arguably the most experienced and knowledgable institution in the world for the measurement and characterization of graphene and other 2D materials.

Dr. Andrew Pollard is the Science Area Leader of the Surface Technology Group and leads NPL's research into the structural and chemical characterisation of graphene and related 2D materials, with a focus on enabling industrial commercialisation in this area. This metrology research addresses the actual measurement of 2D materials with a range of surface characterisation techniques, such as Raman spectroscopy and tip-enhanced Raman spectroscopy (TERS), scanning probe microscopies (SPM), scanning electron microscopy (SEM), secondary ion mass spectrometry (SIMS) and X-ray photoelectron spectroscopy (XPS).




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