期刊
JOURNAL OF PHYSICS D-APPLIED PHYSICS
卷 54, 期 15, 页码 -出版社
IOP Publishing Ltd
DOI: 10.1088/1361-6463/abd433
关键词
lateral photovoltaic effect; nanomaterial; external modulation; photodetection
资金
- National Nature Science Foundation of China [11704094, 51972094, 61774053]
- Nature Science Foundation of Hebei Province [F2018201198, F2019201047, E2020201025]
The development of nanoengineering and nanotechnology has led to the emergence of new materials and structures in optoelectronics. The lateral photovoltaic effect (LPE) has been recognized as an effective method for studying novel materials and shows promising applications in sensors and photodetection. This article comprehensively reviews recent progress on LPE in various novel materials and discusses its sensitivity to different constructions and external modulations, as well as the challenges and potential trends in the near future.
With the development of nanoengineering and nanotechnology, numerous emerging materials and constructions are being presented in optoelectronics to challenge traditional photoelectric effects and detecting techniques, and are inspiring innovation and growth in photoelectric research fields. Recently, due to its unique working mechanism, the lateral photovoltaic effect (LPE) has been identified as an indispensable and effective method of studying the properties of novel materials and also shows promising application in position sensors and photodetection. This article will present a comprehensive review of the recent progress on the LPE in novel materials, including metal nanomaterials, oxide semiconductors, organic semiconductors, two-dimensional layered materials, and perovskites. Moreover, it is demonstrated that the LPE is also very sensitive to different constructions or external modulations and can be substantially tuned by changing the structure or morphology of materials, adding external fields, and utilizing plasmon resonance. This summary may provide a comprehensive picture regarding the recent achievements of the LPE in novel materials and external modulations. Finally, we also present a discussion of the challenges and potential trends of the LPE in the near future.
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