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A 1D conical nanotubular TiO2/CdS heterostructure with superior photon-to-electron conversion.


ABSTRACT: Herein, a new strategy to efficiently harvest photons in solar cells is presented. A solar cell heterostructure is put forward, based on a 1D conical TiO2 nanotubular scaffold of high aspect ratio, homogenously coated with a thin few nm layer of CdS light absorber using atomic layer deposition (ALD). For the first time, a large variety of conical nanotube layers with a huge span of aspect ratios was utilized and ALD was used for the preparation of a uniform CdS coating within the entire high surface area of the TiO2 nanotubes. The resulting 1D conical CdS/TiO2 tubular heterostructure acts as a sink for photons. Due to the multiple light scattering and absorption events within this nanotubular sink, a large portion of photons (nearly 80%) is converted into electrons. It is the combination of the scaffold architecture and the light absorber present on the high surface area as a very thin layer, the optimized charge transport and multiple optical effects that make this heterostructure very promising for the next generation of highly performing solar cells.

SUBMITTER: Zazpe R 

PROVIDER: S-EPMC6137607 | biostudies-literature | 2018 Sep

REPOSITORIES: biostudies-literature

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A 1D conical nanotubular TiO<sub>2</sub>/CdS heterostructure with superior photon-to-electron conversion.

Zazpe R R   Sopha H H   Prikryl J J   Krbal M M   Mistrik J J   Dvorak F F   Hromadko L L   Macak J M JM  

Nanoscale 20180901 35


Herein, a new strategy to efficiently harvest photons in solar cells is presented. A solar cell heterostructure is put forward, based on a 1D conical TiO2 nanotubular scaffold of high aspect ratio, homogenously coated with a thin few nm layer of CdS light absorber using atomic layer deposition (ALD). For the first time, a large variety of conical nanotube layers with a huge span of aspect ratios was utilized and ALD was used for the preparation of a uniform CdS coating within the entire high sur  ...[more]

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