Researchers recently used oil as an ‘entrance door’ for loading rubber with carbon fillers of various sizes and dimensionalities, including 1D carbon nanotubes (CNTs), 2D graphene nanoplatelets (GNPs), and 3D graphite.
Recent research has highlighted the potential of 2D materials as a means of forming vertical heterostructures that are held together by van der Waals forces - attraction and repulsions between molecules, atoms, and surfaces.
Biosensing with 2D graphene offers real-time health monitoring and advanced diagnostics, enhancing early disease detection with innovative nano-biosensors.
As silicon based semiconducting technology is approaching the limit of its performance, new materials that may replace or partially replace silicon in technology is highly desired.
Two-dimensional (2D) materials have attracted wide interest for their unique electronic structure and abundant physiochemical properties.
New research published in the journal Chemistry of Materials aims to overcome the challenges of producing 2D materials on a large scale by introducing a novel method for the nucleation and growth of graphene.
The latest research in the Chemical Engineering Journal focuses on a sophisticated two-dimensional (2D) photonic drug-delivery technology based on PEGylated WO2.9 nanosheets (a substoichiometric version of WO3) (NSs).
Micro-electro-mechanical devices (MEMS) are based on the integration of mechanical and electrical components on a micrometer scale.
Assessing optical inspection methods for 2D materials, this study identifies key techniques and challenges, paving the way for innovative material applications.
Liquid crystals have properties that are more intriguing than other smart materials, which can be employed to print objects that are sensitive to external stimuli. This is considered in new research in the journal Advanced Materials.
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