Ammonia Sensing via Pseudo Molecular Doping in UV-Activated Ambipolar Silicon Nanowire Transistors (bibtex)
by Vardhan, Vaishali, Biswas, Subhajit, Tsetseris, Leonidas, Ghosh, Sayantan, Echresh, Ahmad, Hellebust, S., Huebner, Rene, Georgiev, Yordan M. and Holmes, Justin D.
Reference:
Ammonia Sensing via Pseudo Molecular Doping in UV-Activated Ambipolar Silicon Nanowire Transistors (Vardhan, Vaishali, Biswas, Subhajit, Tsetseris, Leonidas, Ghosh, Sayantan, Echresh, Ahmad, Hellebust, S., Huebner, Rene, Georgiev, Yordan M. and Holmes, Justin D.), In ACS Applied Materials & Interfaces, volume 17, 2025.
Bibtex Entry:
@article{doi:10.1021/acsami.5c08140,
	call={pr015},
        acronym={CSTEM},
        fulltitle={Computational Studies on Emerging Materials},
        pi={Leonidas Tsetseris},
        affiliation={National Technical University of Athens},
        researchfield={Chemical Sciences and Materials},
	author = {Vardhan, Vaishali and Biswas, Subhajit and Tsetseris, Leonidas and Ghosh, Sayantan and Echresh, Ahmad and Hellebust, S. and Huebner, Rene and Georgiev, Yordan M. and Holmes, Justin D.},
	title = {Ammonia Sensing via Pseudo Molecular Doping in UV-Activated Ambipolar Silicon Nanowire Transistors},
	journal = {ACS Applied Materials \& Interfaces},
	volume = {17},
	number = {31},
	pages = {44686-44698},
	year = {2025},
	bibyear = {2025},
	doi = {10.1021/acsami.5c08140},
	note ={PMID: 40705677},
	URL = {https://doi.org/10.1021/acsami.5c08140},
	eprint = {https://doi.org/10.1021/acsami.5c08140}
}