Design and Engineering of 2D Heterostructures for Solar
Performance enhancement strategies for 2D heterostructure solar cells such as light-trapping technique, charge carrier dynamics, and interface engineering have been
Performance enhancement strategies for 2D heterostructure solar cells such as light-trapping technique, charge carrier dynamics, and interface engineering have been
Performance enhancement strategies for 2D heterostructure solar cells such as light-trapping technique, charge carrier dynamics, and
These heterostructures are highly suitable for bifunctional, self-cleaning and anti-reflective coating applications on building glass and photovoltaic glass covers.
Performance enhancement strategies for 2D heterostructure solar cells such as light-trapping technique, charge carrier dynamics, and interface engineering have been
Interface engineering plays a critical role in advancing the performance of perovskite solar cells. As such, 2D/3D perovskite
Interface engineering plays a critical role in advancing the performance of perovskite solar cells. As such, 2D/3D perovskite heterostructures are of particular interest due
The samples were encapsulated using ultra-thin glass and exposed to 532 nm lasers, which were calibrated to 1 sun condition by adjusting the power and optical density.
These heterostructures are highly suitable for bifunctional, self-cleaning and anti-reflective coating applications on building glass and photovoltaic glass covers.
A standardized model is presented for evaluating the efficiency of spectral converters integrated into PV glass, systematically assessing spectral absorption and
In this work, a simulation study of a heterojunction solar cell was performed with SCAPS (a solar cell simulator) using TiO2 as an n-type and CuO as a p-type layer.
A standardized model is presented for evaluating the efficiency of spectral converters integrated into PV glass, systematically
Transparent, anti-reflective, visible-light-driven photocatalytically active and superhydrophilic heterostructure coating have been synthesized on glass substrates.
Constructing two-dimensional/three-dimensional (2D/3D) heterostructures can effectively regulate crystallization and suppress defect formation for developing high-quality
In this article a novel heterostructure of TiO2@SnS has been prepared by sol-gel technique for increase the current density and performance of solar cells. The main objective
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