Optical properties of silicon light trapping structures for

Finally, a comparison is made for the photovoltaic parameters of solar cells made of ultrafast laser textured surfaces, chemically textured surfaces, porous silicon surfaces, and etched

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Black silicon with order-disordered structures for enhanced light

This work establishes a robust relationship between three-dimensional structure and light-trapping property of black silicon and provides insights into substrate designs that facilitate the light

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Recent Advances in Black Silicon Surface Modification for Enhanced

Abstract The intricate nanostructured surface of black silicon (BSi) has advanced photodetector technology by enhancing light absorption. Herein, we delve into the latest advancements in BSi

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Photo-Thermoelectric Conversion Using Black Silicon with Enhanced

Here, we prepared highly conductive b-Si without an apparent optical bandgap by a reactive ion etching process, which can largely absorb light with a wide range wavelength and even

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Light trapping in thin silicon solar cells: A review on fundamentals

In this paper, the fundamentals of light trapping in crystalline silicon will be discussed and a review is presented on existing Despite the rise of a plethora of alternative technologies, more than light

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Recent Advances in Black Silicon Surface Modification for Enhanced

The intricate nanostructured surface of black silicon (BSi) has advanced photodetector technology by enhancing light absorption. Herein, we delve into the latest advancements in BSi surface modification

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Large-Scale Wideband Light-Trapping Black Silicon Textured by Laser

To prepare ultrahigh-absorptivity black silicon surfaces at a large scale in a green and economical way, the method of laser inducing assisted by laser-plasma shockwave cleaning in

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Black silicon for near-infrared and ultraviolet photodetection: A

In this article, the recent theoretical and experimental breakthroughs in near-infrared and ultraviolet detection using black silicon are summarized in detail. First, black silicon and the

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Wave optical simulation of the light trapping properties of black

For further optimization of the light trapping effect, particularly in combination with rear side structures, it is necessary to simulate the optical properties of black silicon. Especially, the

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Large-Scale Wideband Light-Trapping Black Silicon Textured by Laser

This method provides an effective, green, and low-cost solution to the processing of large-scale black silicon, which extends the working window from visible light to mid-infrared.

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Black silicon with order-disordered structures for enhanced light

Abstract Black silicon has become a versatile substrate for photoelectric and photothermic application due to its excellent light trapping ability. However, subsequent material engineering can

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Light trapping in thin silicon solar cells: A review on fundamentals

In this paper, the fundamentals of light trapping in crystalline silicon will be discussed and a review is presented on existing light-trapping strategies. First, the optical properties of silicon and the benefits

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Light scattering from black silicon surfaces and its benefits for

Black silicon (b-Si) has been widely investigated as a potential replacement for more traditional antireflective schemes for silicon solar cells, such as random pyramids, due to its reduced

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Insights in light trapping for new generation silicon solar cell

Designing light-trapping is one of the requirements for new generation silicon solar cells. Herein, the optical properties of front-based plasmonic nanoparticles besides the anti-reflection layer

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