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The nanostructure could provide the efficient carrier collection.
This process also encourages the carrier collection near the junction.
Usually, carrier collection is a size-dependent behavior [12].
Decoupling paths of carrier collection and illumination within photovoltaic devices is one promising approach for improving their efficiency by simultaneously increasing light absorption and carrier collection efficiency.
To ensure exciton dissociation and carrier collection, continuous percolation pathways are required.
Photovoltaic conversion efficiency was determined by light absorbance and carrier collection efficiency.
The light harvesting is along the wire and the carrier collection is along the radial direction.
Photoconductive gain has a physical meaning of the excess carrier collection efficiency in a photodetector.
This is beneficial for carrier collection, and it also suppresses recombination at the GBs.
This improves the carrier collection efficiency in the shorter wavelength region.
The very large interfacial area available for charge separation processes also increases the carrier collection efficiency.
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