Large‐Area Black Phosphorus/PtSe2 Schottky Junction for High Operating Temperature Broadband Photodetectors

Author:

Yang Xue12,Zhou Xi2,Li Lei3,Wang Ning2,Hao Rui2,Zhou Yanan2,Xu Hua4,Li Yingtao5,Zhu Guangming2,Zhang Zemin5ORCID,Wang Junru1,Feng Qingliang2ORCID

Affiliation:

1. College of Chemistry & Pharmacy Northwest A&F University 22 Xinong Road Yangling Shaanxi 712100 China

2. Key Laboratory of Special Functional and Smart Polymer Materials of Ministry of Industry and Information Technology School of Chemistry and Chemical Engineering Northwestern Polytechnical University Xi'an Shaanxi 710072 China

3. Frontiers Science Center for Flexible Electronics Xi'an Institute of Flexible Electronics (IFE) and Xi'an Institute of Biomedical Materials & Engineering Northwestern Polytechnical University 127 West Youyi Road Xi'an 710072 China

4. Key Laboratory of Applied Surface and Colloid Chemistry Ministry of Education School of Materials Science and Engineering Shaanxi Normal University Xi'an 710119 China

5. School of Physical Science and Technology Lanzhou University Lanzhou 730000 China

Abstract

AbstractHigh operating temperature (HOT) broadband photodetectors are urgently necessary for extreme condition applications in infrared‐guided missiles, infrared night vision, fire safety imaging, and space exploration sensing. However, conventional photodetectors show dramatic carrier mobility decreases and carrier losses with low photoresponsivity at HOT due to the increased carrier scattering in channels at high temperatures. Herein, the HOT broadband photodetectors from room temperature to 470 K are developed for the first time by large‐area black phosphorus (BP)/PtSe2 films device arrays via a depletion‐enhanced photocarrier dynamics strategy. Attributed to the 2D Schottky junction at BP/PtSe2 interface and resulting in full depleted working channels, the BP/PtSe2 photodetector arrays exhibit high tolerance to carrier mobility decrease during the increasing operating temperature in a wide wavelength range from 532 to 2200 nm. Thus, the photodetector shows a state‐of‐the‐art operating temperature at 470 K with the photo‐responsivity (R) and specific detectivity (D*) of 25 A W−1 and 6.4 × 1011 Jones under 1850 nm illumination, respectively. Moreover, BP/PtSe2 photodetector arrays show high‐uniformity photo‐response in a large area. This work provides new strategies for high‐performance broadband photodetector arrays with HOT by Schottky junction of large‐area BP/PtSe2 films.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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