Photoelectric Materials and Sensing Applications
A special issue of Sensors (ISSN 1424-8220).
Deadline for manuscript submissions: closed (31 October 2023) | Viewed by 3117
Special Issue Editor
Interests: nanostructural design of semiconductor photocatalysts; photocatalytic performance optimization; photocatalysis mechanisms; environmental applications of photocatalysis
Special Issue Information
Dear Colleagues,
Optoelectronic materials are often regarded as the cornerstone of the optoelectronic information industry. In recent decades, although significant progress has been made in the development of optoelectronic materials for various applications, the understanding and optimal design of high-performance optoelectronic materials still need to be improved in various specific applications. Recently, the emerging applications of nanostructures/nanomaterials in newly developed nanotechnology provide opportunities to significantly improve photoelectric performance by improving optical absorption, carrier separation and transfer efficiency. On the other hand, many new systems of optoelectronic materials have been developed, such as perovskite materials, organic–inorganic heterojunction, nano-photonics and semiconductor electrolyte junction. The organic combination of nanostructures/nanomaterials and new (or traditional) materials will greatly improve the performance of photoelectric materials. An important reason for this is that nanostructures/nanomaterials can significantly enhance light collection in a very small area, in which the transmission distance for photo-generated carrier extraction is very small, and the active sites for photo-generated carrier transfer are relatively dense.
In this Special Issue, we aim to provide a timely perspective on the advances in photoelectric materials and sensing applications. Topics to be covered include (but are not limited to):
- The fabrication of nanostructures.
- The optical properties of nanostructures.
- Optoelectronic materials: fabrication and optoelectronic properties.
- Sensing (refractive index sensing, optical fiber sensing, biosensors and so on).
- Sensing under artificial intelligence.
- Photocatalysis and applications.
- Photoluminescence and devices.
- The interaction between light and matter.
Prof. Dr. Hua Yang
Guest Editor
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Keywords
- nanostructures
- photoelectric materials
- micro-nano optics
- plasmonics
- sensing
- photocatalysis
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