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Silicon materials are widely used for medical, optical, and microelectronic applications.
This is far too laborious for nanotubes to be used in microelectronic applications right away.Still, Dr Zettl thinks it can be done soon.
In microelectronic applications, deposit quality is determined on the molecular scale by the action of additives.
The obtained results may facilitate the design of high-performance SBDs for sensing and microelectronic applications.
The remarkable properties of carbon nanotubes (CNTs) make them attractive for microelectronic applications, especially for interconnects and nanoscale devices.
Silicon carbide (SiC) is a superior material potentially replacing conventional silicon for high-power and high-frequency microelectronic applications.
Similar(33)
The obtained results demonstrate a viable route for formation of low resistivity, sub-100 nm Cu films on dielectrics for microelectronic application.
The objective of this paper is to clarify the hydrogen behavior in silicon nitride in order to optimize film characteristics for each microelectronic application.
These results might aid engineers to produce products with less RMS surface roughness thereby improving thermal efficiency of the microelectronic application.
Thermal contact constriction between a chip and a heat sink assembly of a microelectronic application is investigated in order to access the thermal performance.
In the field of microelectronic application, controllable assembly and directional in situ synthesis of CNTs are very crucial steps to incorporate CNTs directly into the integrated circuit.
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