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May 16, 2024
/PRNewswire/ -- The global hexagonal boron nitride market size is estimated to grow by USD 345.2 million from 2023-2027, according to Technavio. The market is...
February 27, 2024
The global 2D Materials Market Size, Share & Trends Analysis Report By Material (Graphene, Black Phosphorous, Transition Metal Dichalcogenides, Mxenes, Hexagonal Boron Nitride), And End Users (Composite And Coating, Energy Storage Devices, Electronics, Semiconductors, Pharmaceuticals, Automobiles )- Market Outlook And Industry Analysis 2031"
November 29, 2023
As a 2D material, hBN has been attracting a great deal of research interest for its optical properties and potential applications in photonics.
November 6, 2023
White Graphite (Hexagonal Boron Nitride) Market Analysis and Future Prospects for 2030
June 22, 2023
Hexagonal Boron Nitride Market Research Report Information By Type (Tubes, Rods, Plates, Gaskets, Crucibles, Sheets, Others), By Application (Electrical...
November 16, 2022
Here could be the tools for probing next-gen, 2D electronics
October 31, 2022
MIT engineers synthesized aligned forests of nanoscale fibers made of boron nitride, or “white graphene.” They hope to harness the technique to fabricate bulk-scale arrays of these nanotubes, which can then be combined with other materials to make stronger, more heat-resistant composites, for instance to shield space structures and hypersonic aircraft.
October 28, 2022
Atomically thin 2D materials for applications in microelectronics or nanotechnology are grown by breaking down gas on a hot metal surface. Due to the high temperatures and rapid transformation of ...
October 23, 2022
Hexagonal boron nitride (hBN) is one of the potential 2D materials with high stability and mechanical strength with a wide range of potential applications. This article discusses the applications of hBN.
October 10, 2022
Surrey University researchers have performed quantum calculations that have allowed scientists to discover new phases of a two-dimensional material that could be used to develop fuel-cells devices.