Revolutionary Semiconductors Class from Routine Nanofabrication osaka_univ_e
Understanding and controlling the motion of electrons in a metal is essential for advancements in contemporary microelectronics. Metal sheets can be made as thin as a few nanometers, which enables precise control over the motion of the metal’s electrons.
It is still a current area of research to fine-tune the architecture of metal nanosheets to enable enhanced microelectronic functions. In reality, this subject has received many Nobel prizes. Nanoscale hetero-dimensional superlattices are typically challenging to prepare, but can exhibit valuable physical properties, such as anisotropic electrical conductivity. We developed a versatile means of preparing such structures, and in so doing we will inspire synthesis of a wide range of custom superstructures. Vanadium-based superlattices were created by researchers using chemical vapor deposition, a popular nanofabrication technology in the industry.
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