Pushing limits of photovoltaics and photodetection using radial junction nanowire devices
Vidur Raj, Yi Zhu, Kaushal Vora, Lan Fu, Hark Hoe Tan, and Chennupati, Jagadish

TL;DR
This paper demonstrates that radial junction nanowire devices significantly outperform axial and planar counterparts in photovoltaics and photodetection, especially with low-quality absorbers, achieving high efficiency and single-photon sensitivity.
Contribution
It provides the first comprehensive simulation and experimental validation of high-performance radial junction nanowire optoelectronic devices, highlighting their advantages over traditional designs.
Findings
Radial junction nanowire solar cells reach 17.2% efficiency.
Radial junction photodetectors detect single photons at low absorber lifetimes.
Radial devices outperform axial and planar counterparts in efficiency and sensitivity.
Abstract
Nanowire devices have long been proposed as an efficient alternative to their planar counterparts for different optoelectronic applications. Unfortunately, challenges related to the growth and characterization of doping and p-n junction formation in nanowire devices (along axial or radial axis) have significantly impeded their development. The problems are further amplified if a p-n junction has to be implemented radially. Therefore, even though radial junction devices are expected to be on par with their axial junction counterparts, there are minimal reports on high-performance radial junction nanowire optoelectronic devices. This paper summarizes our recent results on the simulation and fabrication of radial junction nanowire solar cells and photodetectors, which have shown unprecedented performance and clearly demonstrate the importance of radial junction for optoelectronic…
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Taxonomy
TopicsNanowire Synthesis and Applications · Advancements in Semiconductor Devices and Circuit Design · solar cell performance optimization
