A broadband self-powered and stable photothermoelectric detector based on
Wei-Peng Shi , Rui Guo , Gai-Ling Tian , Yi Chen , Yong-Hua Wang , Dan-Feng Cui , Dan Liu , Chen-Yang Xue
Microstructures ›› 2025, Vol. 5 ›› Issue (4) : 2025081
A broadband self-powered and stable photothermoelectric detector based on
Photothermoelectric (PTE) detectors hold immense potential for converting incident light signals into electrical signals, finding applications in sensing, astronomy, night vision, and communication. However, their widespread adoption is hindered by issues such as slow response times, low responsivity, and poor stability. In this study, a high-performance self-powered PTE detector based on the Ag2Se nanorods (NRs) and multi-walled carbon nanotubes (MWCNTs) is reported for the first time. The findings reveal that the electrical conductivity of the film increases with the addition of MWCNTs, albeit at the expense of the Seebeck coefficient. Notably, the film containing 0.5 wt% MWCNTs exhibited a superior power factor (303.22 μW·m-1·K-2) at 300 K. Owing to the high PTE performance, the photosensitive properties are characterized in an ultra-broadband range from the violet
Photothermoelectric detectors / broadband / screen printing / Ag2Se / multi-walled carbon nanotubes
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