A perspective in Next Nanotechnology examines how integrating quantum biosensors with microfluidic organ-on-a-chip platforms ...
A comprehensive review identifies graphene dispersion, carbon-aluminum interface control, and manufacturing cost as major ...
All-atom molecular dynamics simulations examined how gold tracks embedded in cylindrical silver substrates could guide the ...
PI (Physik Instrumente) is expanding the capabilities of its Bi-Phase Inertia Drive (BIX) technology with new motor ...
Researchers converted sawdust into cellulose particles and tested them across water retention, barley growth, synthetic dye removal, and wound healing in mice. The results showed application-specific ...
A review of cellulose nanomaterial-based electrospun membranes finds that nanocellulose can increase mechanical strength, ...
Researchers developed a sterically regulated electrolyte that uses a non-flammable cyclic fluorinated diluent to form ...
Placing two lattices - like window screens - on top of each other and twisting one layer compared to the other creates intriguing patterns. In fact, there are toys based on the designs that emerge, ...
Semiconductors or microchips are the foundational components powering the modern technological landscape. These tiny electronic devices process, store, and transmit data in various electronic devices, ...
Researchers engineered HZO-SiO2 nanomechanical resonators that use nanoscale oxide layering and phase-dependent elasticity to ...
Researchers at Argonne are shaping the nanoscience frontier, using atomic-scale control to accelerate advances in electronics, energy storage, catalysis, sensing and medicine.
Governor Kathy Hochul today announced the beginning of installation of Tokyo Electron’s leading-edge 300 mm wafer coater/developer system designed to support the next generation of semiconductor ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results