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Authors:
Zhao, Yan-Feng; Fuh, Huei-Ru; Ó Coileáin, Cormac; Cullen, Conor; Stimpel-Lindner, Tanja; Duesberg, Georg; Moreira, Oscar Leonardo Camargo; Zhang, Duan; Cho, Jiung; Choi, Miri; Chun, Byong Sun; Chang, Ching-Ray; Wu, Han-Chun 
Document type:
Zeitschriftenartikel / Journal Article 
Title:
Highly Sensitive, Selective, Stable, and Flexible NO2 Sensor Based on GaSe 
Journal:
Advanced Materials Technologies 
Volume:
Issue:
Year:
2020 
Pages from - to:
1901085 
Language:
Englisch 
Abstract:
Air pollution is a global problem, which poses serious environmental concerns and health risks. In light of this, a key aspect of the challenge of managing air pollution is effective monitoring, which requires reliable high‐sensitivity sensors with strong selectivity and long‐term stability. Layered materials represent an emergent class of materials with extraordinary electronic properties and physicochemical properties, and, therefore, are a highly attractive prospect for this field. Here, such a sensor for NO2 based on GaSe is presented. An ultrahigh sensitivity of 0.5 part per billion (p.p.b.) is achieved at room temperature, and the NO2 selectivity ratios with respect to other likely interfering environmental gases are larger than 100. Moreover, no great degradation is observed after 10 days of air exposure. As a practical demonstration, the GaSe‐based sensors are also used to detect vehicle exhaust emission, and wearable … 
ISSN:
2365-709X 
Article ID:
1901085 
Department:
Fakultät für Elektrotechnik und Informationstechnik 
Institute:
EIT 2 - Institut für Physik 
Chair:
Düsberg, Georg 
Open Access yes or no?:
Nein / No