Select Page
Graphene and MoS2 make for a highly light-absorbent and tunable material

Graphene and MoS2 make for a highly light-absorbent and tunable material

physicists at the University of Basel have created a novel structure with the ability to absorb almost all light of a selected wavelength, by layering different 2D materials: graphene and molybdenum disulfide. Schematic illustration of the electron-hole pairs...
New technique allows for processing surfaces on an atomic scale

New technique allows for processing surfaces on an atomic scale

Researchers at TU Wien have designed a nano-structuring method, with which certain layers of a material can be perforated with extreme precision while others are left completely untouched, even though the projectile penetrates all layers.The projectile penetrates all...

An interview with Patrick Frantz, planarTECH’s co-founder and CEO

UK-based planarTECH has launched an equity crowdfunding campaign on Seedrs, as part of Graphene-Info’s Graphene Crowdfunding Arena. planarTECH aims to expand its current business and also initiate new graphene endeavors. Investors are now able to participate in...
Graphene production systems maker planarTECH launches an equity crowdfunding campaign to support its future growth potential

Graphene production systems maker planarTECH launches an equity crowdfunding campaign to support its future growth potential

UK-based planarTECH is launching an equity crowdfunding campaign at on Seedrs, as part of Graphene-Info’s Graphene Crowdfunding Arena. planarTECH aims to expand its current business and also initiate new graphene endeavors.planarTECH, founded in 2014, supplies...
Graphene inks help stabilize the stability of perovskite solar cells

Graphene inks help stabilize the stability of perovskite solar cells

Researchers from the Graphene Flagship have developed hybrids of graphene and molybdenum disulphide quantum dots to stabilize perovskite solar cells (PSCs). PSCs are a novel type of solar cells which are efficient, relatively easy to produce, made with cheaper...