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New Ultraviolet Photodetector Based on Individual Nb 2 O 5 Nanobelts
Author(s) -
Fang Xiaosheng,
Hu Linfeng,
Huo Kaifu,
Gao Biao,
Zhao Lijuan,
Liao Meiyong,
Chu Paul K.,
Bando Yoshio,
Golberg Dmitri
Publication year - 2011
Publication title -
advanced functional materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.069
H-Index - 322
eISSN - 1616-3028
pISSN - 1616-301X
DOI - 10.1002/adfm.201100743
Subject(s) - materials science , photodetector , photocurrent , optoelectronics , ultraviolet , crystallinity , hydrothermal circulation , dark current , quantum efficiency , chemical engineering , engineering , composite material
Abstract Although human eyes are quite insensitive to ultraviolet (UV) light, most of the longer wavelength UV light (the UV‐A band between 320 and 400 nm) does reach the earth surface and after prolonged exposure, the radiation can cause health concerns especially skin cancer. Therefore, it is extremely important to explore ways to effectively monitor the radiation. Herein we report for the first time a new high‐performance UV photodetector made of an individual Nb 2 O 5 nanobelt. Quasi‐aligned Nb 2 O 5 nanobelts 100–500 nm wide and 2–10 μm long were synthesized using a hydrothermal treatment of a niobium foil in a KOH solution followed by proton exchange and calcination treatment. A nanostructured photodetector was constructed from an individual Nb 2 O 5 nanobelt and its optoelectronic properties were evaluated. The detector exhibited linear photocurrent characteristics, excellent light selectivity, and high external quantum‐efficiency (EQE) of 6070%. Long‐term stability of the photocurrent over a period of 2500 s at an applied voltage of 1.0 V was achieved. The photodetector performance was further enhanced by improving the crystallinity and eliminating the defects in the Nb 2 O 5 nanobelt crystals. These excellent optoelectronic properties demonstrate that Nb 2 O 5 nanobelts are suitable for visible‐blind UV‐light sensors and optoelectronic circuits, especially those operating in the UV‐A range.