© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Accurate measurement of ultraviolet radiation is key to many technologies including wearable devices for skin cancer prevention, optical communication systems, and missile launch detection. Nanostructuring of wide bandgap semiconductors, such as GaN, ZnO, and SiC, promises some benefits over established commercial solutions relying on n–p type Si-homojunction technology. In the past decade, a variety of carefully nanostructured architectures have been demonstrated as efficient designs for visible-blind UV photodetectors featuring superior detectivity, thermal stability, robust radiation hardness, and very low operation bias and power consumption. Here, a comprehensive review of the latest ac...
Visible-blind ultraviolet photodetectors are a promising emerging technology for the development of ...
The rising demand for optoelectronic devices to be operable in adverse environments necessitates the...
Only abstract of poster available.Track IV: Materials for Energy ApplicationsWide band-gap semicondu...
Ultraviolet (UV) detectors have attracted considerable attention in the past decade due to their ext...
Accurate detection of ultraviolet radiation is critical to many technologies including wearable...
A hierarchical nano- and microstructured morphology for visible-blind UV photo-detectors is develope...
A hierarchical nano- and microstructured morphology for visible-blind UV photodetectors is developed...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Accurate detection of ultraviolet radiation is cri...
Accurate detection of ultraviolet radiation is critical to many technologies including wearable devi...
© 2017 The Royal Society of Chemistry. Visible-blind ultraviolet photodetectors are a promising emer...
ZnO nanowall networks were prepared by plasma-assisted molecular beam epitaxy without a catalyst on ...
© 2016 American Chemical Society. Accurate detection of UV light by wearable low-power devices has m...
Accurate detection of UV light by wearable low-power devices has many important applications includi...
Vertically aligned GaN nanotowers (NTs) were grown on the Si (111) substrate by plasma-assisted mole...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. A hierarchical nano- and microstructured morpholo...
Visible-blind ultraviolet photodetectors are a promising emerging technology for the development of ...
The rising demand for optoelectronic devices to be operable in adverse environments necessitates the...
Only abstract of poster available.Track IV: Materials for Energy ApplicationsWide band-gap semicondu...
Ultraviolet (UV) detectors have attracted considerable attention in the past decade due to their ext...
Accurate detection of ultraviolet radiation is critical to many technologies including wearable...
A hierarchical nano- and microstructured morphology for visible-blind UV photo-detectors is develope...
A hierarchical nano- and microstructured morphology for visible-blind UV photodetectors is developed...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Accurate detection of ultraviolet radiation is cri...
Accurate detection of ultraviolet radiation is critical to many technologies including wearable devi...
© 2017 The Royal Society of Chemistry. Visible-blind ultraviolet photodetectors are a promising emer...
ZnO nanowall networks were prepared by plasma-assisted molecular beam epitaxy without a catalyst on ...
© 2016 American Chemical Society. Accurate detection of UV light by wearable low-power devices has m...
Accurate detection of UV light by wearable low-power devices has many important applications includi...
Vertically aligned GaN nanotowers (NTs) were grown on the Si (111) substrate by plasma-assisted mole...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. A hierarchical nano- and microstructured morpholo...
Visible-blind ultraviolet photodetectors are a promising emerging technology for the development of ...
The rising demand for optoelectronic devices to be operable in adverse environments necessitates the...
Only abstract of poster available.Track IV: Materials for Energy ApplicationsWide band-gap semicondu...