| Literature DB >> 31025440 |
Qijie Liang1,2, Qixing Wang2, Qian Zhang3, Jingxuan Wei4, Sharon Xiaodai Lim2, Rui Zhu2, Junxiong Hu2, Wei Wei4, Chengkuo Lee4, ChorngHaur Sow2,5, Wenjing Zhang1, Andrew Thye Shen Wee2,5.
Abstract
Photodetection over a broad spectral range is crucial for optoelectronic applications such as sensing, imaging, and communication. Herein, a high-performance ultra-broadband photodetector based on PdSe2 with unique pentagonal atomic structure is reported. The photodetector responds from visible to mid-infrared range (up to ≈4.05 µm), and operates stably in ambient and at room temperature. It promises improved applications compared to conventional mid-infrared photodetectors. The highest responsivity and external quantum efficiency achieved are 708 A W-1 and 82 700%, respectively, at the wavelength of 1064 nm. Efficient optical absorption beyond 8 µm is observed, indicating that the photodetection range can extend to longer than 4.05 µm. Owing to the low crystalline symmetry of layered PdSe2 , anisotropic properties of the photodetectors are observed. This emerging material shows potential for future infrared optoelectronics and novel devices in which anisotropic properties are desirable.Keywords: anisotropic; near-infrared and mid-infrared; photogating; room temperature; ultra-broadband photodetectors
Year: 2019 PMID: 31025440 DOI: 10.1002/adma.201807609
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849