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SMARTFACE focuses on enhancing silicon surfaces for nanoelectronics by immobilizing N-heterocyclic carbenes on boron-doped silicon substrates. This innovative approach aims to improve silicon's resistance to harsh conditions and tailor its electrical properties for various applications, including biosensing.
The significance of cutting-edge nanoelectronics is inherently tied to the utilization and integration of silicon.
The material is embedded as a semiconductor in a multitude of devices, such as nano- and microchips for computing.
Given its paramount importance for the high-tech industry, intense research focuses on manipulating and optimising silicon surfaces.
Silicon coating efforts aim to increase its resistance against harsh conditions (temperature, high electron potential, UV light, etc.), s…
UNIVERSITAET MUENSTER
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