光电流
黑磷
材料科学
带隙
图层(电子)
光电子学
透射电子显微镜
导电原子力显微镜
原位
光电导性
纳米技术
原子力显微镜
化学
有机化学
作者
Chao Zhang,Anastasia V. Korovina,Konstantin L. Firestein,Joseph F. S. Fernando,Courtney‐Elyce M. Lewis,Dmitry G. Kvashnin,Dmitri Golberg
出处
期刊:Small
[Wiley]
日期:2023-05-18
卷期号:20 (39): e2302455-e2302455
被引量:3
标识
DOI:10.1002/smll.202302455
摘要
The optoelectronic signatures of free-standing few-atomic-layer black phosphorus nanoflakes are analyzed by in situ transmission electron microscopy (TEM). As compared to other 2D materials, the band gap of black phosphorus (BP) is related directly to multiple thicknesses and can be tuned by nanoflake thickness and strain. The photocurrent measurements with the TEM show a stable response to infrared light illumination and change of nanoflakes band gap with deformation while pressing them between two electrodes assembled in the microscope. The photocurrent spectra of an 8- and a 6-layer BP nanoflake samples are comparatively measured. Density functional theory (DFT) calculations are performed to identify the band structure changes of BP during deformations. The results should help to find the best pathways for BP smart band gap engineering via tuning the number of material atomic layers and programmed deformations to promote future optoelectronic applications.
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