About Photovoltaic bracket Zhao Jie
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6 FAQs about [Photovoltaic bracket Zhao Jie]
Who is Jie Zhao?
Jie Zhao received his Bachelor's degree in biomedical engineering from Changchun university of science and technology in 2016. She is now a master student in Biological Science & Medical Engineering, Southeast University. Her research focuses on the construction and lasing mode modulation of ZnO/Graphene field effect transistors-like.
How is ZnO/ZnTe photodetector constructed?
The ZnO/ZnTe core/shell nanorod arrays photodetector was constructed by depositing a strip of aluminum (Al) on ZnO seed layer as the bottom electrode by RF sputtering, and a piece of indium tin oxide (ITO) glass was covered on the top of ZnO/ZnTe nanorods as the transparent top-electrode, respectively, as shown in Fig. 1 a.
Does incident light power density affect photovoltaic–pyroelectric coupled effects?
Impacts of incident light power densities on photovoltaic–pyroelectric coupled effects on the ZnO/ZnTe photodetector under different laser illumination at zero bias under frequency of 20 Hz.
Is pyroelectric effect regulated by external bias voltage?
These results manifest that the pyroelectric effect is regulatable by the external applied bias voltage. The response time of this core-shell nanorods photodetector is faster than most of the reported ZnO/ZnTe photodetectors [33, 42].
Should a p-n heterojunction be based on n-type ZnO and ZnTe?
It is beneficial to construct a p-n heterojunction based on the favorable energy band configuration of the n-type ZnO with wide bandgap of 3.21 eV and the p-type ZnTe with bandgap of 2.25 eV [, , , , ].
Is ZnO a wide bandgap semiconductor?
Among the variety of materials, ZnO as a wide bandgap semiconductor (3.21 eV) draws great attention in photodetection application owing to its ease of fabrication, high electron mobility, tunable conductivity and high internal gain [, , , ].


