材料科学
响应度
光电探测器
热辐射计
光电子学
光子
石墨烯
范德瓦尔斯力
噪声等效功率
光子学
工程物理
纳米技术
光学
物理
探测器
分子
量子力学
作者
Mengjie Jiang,Huaizhong Xing,Libo Zhang,Li Han,Kaixuan Zhang,Chenyu Yao,Dong Wang,Xiaodong Wang,Shiqi Lan,Xuyang Lv,Lin Wang
标识
DOI:10.1002/adom.202300074
摘要
Abstract The high‐performance detector that operates at the low‐photon‐energy range (≈meV) of the electromagnetic spectrum at room temperature remains in urgent demand for application in a variety of important sectors, including 6G communications, security, sensing, medicine, space science, etc. The vast range of 2D‐layered nanomaterials and their distinct layer structures provide an ideal foundation for the manufacture of sophisticated photodetectors and detectors with convenient fabrication methods. In this paper, the direct detection of terahertz waveband dominated by the bolometer effect and photo‐thermoelectric effect is demonstrated, which is endowed with a versatile integration of 2H‐NbSe 2 in terms of planar and vertical van der Waals structures. This 2H‐NbSe 2 ‐based device can detect broadband long wavelength due to the bolometer effect, and the van der Waals heterostructure‐based device exhibits excellent sensitivity and self‐powered photo‐thermoelectric conversion with high responsivity (>735 V W −1 ), low response time (<1 µs), as well as low noise equivalent power (NEP < 50 pW Hz −0.5 ) at room temperature. The photodetector engineers versatile detection mechanisms, displaying low‐energy photons on the hybrid integration of novel low‐dimensional materials and providing an opportunity for the practical application of energy harvesting.
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