light trapping in ultrathin plasmonic solar cells

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light trapping in ultrathin plasmonic solar cells - Ultrathin c-Si solar cells based on microcavity light ...

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Ultrathin c-Si solar cells based on microcavity light ...

May 15, 2019· Ultrathin c-Si solar cells with a new light trapping scheme, which is a double-microcavity light trapping structure, are optimized and analyzed. The results show that by optimizing the geometric parameters of each light trapping unit, the light trapping structure can effectively improve the light ...

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Light Trapping: Light Trapping in Ultrathin ...

Light Trapping in Ultrathin Monocrystalline Silicon Solar Cells K. J. Yu, J. S. Park, Y. R. Lee Department of Electrical and Computer Engineering Frederick Seitz Materials Research Laboratory University of Illinois at Urbana-Champaign Urbana, IL 61801, USA L. Gao Department of Material Science and Engineering

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Light trapping in ultrathin plasmonic solar cells.

Jun 21, 2010· Light trapping in ultrathin plasmonic solar cells. Ferry VE(1), Verschuuren MA, Li HB, Verhagen E, Walters RJ, Schropp RE, Atwater HA, Polman A. Author information: (1)Center for Nanophotonics, FOM Institute AMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands. [email protected]

Surface Plasmon Enhanced Light Trapping in Metal/Silicon ...

Enhancing the light absorption in thin film silicon solar cells with nanophotonic and plasmonic structures is important for the realization of high efficiency solar cells with significant cost reduction. In this work, we investigate periodic arrays of conformal metal/silicon nanobowl arrays (MSNBs) for light trapping applications in silicon solar cells.

Plasmonic light trapping in thin-film Si solar cells ...

Jan 12, 2012· Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of light in solar cells. The strong interaction of small metal nanostructures with light allows control over the propagation of light at the nanoscale and thus the design of ultrathin solar cells in which light is trapped in the active layer and efficiently absorbed.

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Light trapping in ultrathin plasmonic solar cells ...

TY - JOUR. T1 - Light trapping in ultrathin plasmonic solar cells. AU - Ferry, Vivian E. AU - Verschuuren, Marc A. AU - Li, Hongbo B.T. AU - Verhagen, Ewold

Presentations

Plasmonic nanostructures for light trapping in ultrathin film solar cells (invited), V. Ferry MRS Spring Meeting, San Francisco, April 9-12, 2012. Efficient light trapping in thin-film Si solar cells using Mie resonators (invited), A. Polman SPIE Photonics Europe, Brussels, April 16-20, 2012.

Plasmonic light trapping in thin-film Si solar cells ...

Jan 12, 2012· Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of light in solar cells. The strong interaction of small metal nanostructures with light allows control over the propagation of light at the nanoscale and thus the design of ultrathin solar cells in which light is trapped in the active layer and efficiently absorbed.

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(PDF) Light trapping in ultrathin plasmonic solar cells

Jun 21, 2010· Light trapping is particularly critical in such thin-film crystalline silicon solar cells in order to increase light absorption and hence cell efficiency.

Plasmonic enhanced solar cells: Summary of possible ...

Feb 01, 2018· Plasmonic structures for light manipulation at sub-wavelength scale have received great interest in the field of photovoltaic (PV) solar cells for their potential to significantly enhance the cell's efficiency. The performance of any solar cell is determined by the capability to absorb incoming light and produce electric charges, which, in turn ...

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Light trapping limits in plasmonic solar cells: an ...

We analytically investigate the light trapping performance in plasmonic solar cells with Si/metallic structures. We consider absorption enhancements for surface plasmon polaritons (SPPs) at planar Si/metal interfaces and localized surface plasmon resonances (LSPRs) for metallic spheres in a Si matrix.

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Towards ultra-thin plasmonic silicon wafer solar cells ...

May 13, 2014· Figs. 1b and 1c identify, respectively, the ultra-thin solar cells with the light trapping nanoparticles located on the front surface of the SiN x ARC and embedded in a SiO 2 dielectric layer ...

Light trapping in mesoporous solar cells with plasmonic ...

Feb 02, 2016· Light trapping in mesoporous solar cells with plasmonic nanostructures W. R. Erwin, H. F. Zarick, E. M. Talbert and R. Bardhan, Energy Environ.Sci., 2016, 9, 1577 DOI: 10.1039/C5EE03847B This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further …

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(PDF) Designing metal hemispheres on silicon ultrathin ...

Aug 15, 2014· We systematically investigate the design of two-dimensional silver (Ag) hemisphere arrays on crystalline silicon (c-Si) ultrathin film solar cells for plasmonic light trapping…

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PLASMONIC LIGHT TRAPPING FOR THIN FILM A-SI:H …

ultrathin film n-i-p a-Si:H solar cells incorporating light trapping plasmonic back reflectors which Solareed the performance of n-i-p cells on randomly textured Asahi substrates. The periodic patterns are made via an inexpensive and scalable nanoimprint method, …

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Light trapping in mesoporous solar cells with plasmonic ...

Light trapping in mesoporous solar cells with plasmonic nanostructures. William R. Erwin , Holly F. Zarick , Eric M. Talbert and Rizia Bardhan * Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, TN, USA 37212.

Nanostructured-Gratings for Enhanced Light Absorption in ...

Request PDF | On Dec 17, 2020, Sameia Zaman and others published Nanostructured-Gratings for Enhanced Light Absorption in Ultra-Thin Crystalline Si Solar Cells | Find, read and cite all the ...

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Designing metal hemispheres on silicon ultrathin film ...

Designing metal hemispheres on silicon ultrathin film solar cells for plasmonic light trapping Tongchuan Gao,1 Erica Stevens,2 Jung-kun Lee,2 and Paul W. Leu1,* 1Department of Industrial Engineering, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA 2Department of Mechanical Engineering & Materials Science, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA

[PDF] Plasmonic light trapping in thin-film Si solar cells ...

Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of light in solar cells. The strong interaction of small metal nanostructures with light allows control over the propagation of light at the nanoscale and thus the design of ultrathin solar cells in which light is trapped in the active layer and efficiently absorbed.

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Light trapping limits in plasmonic solar cells: an ...

Jul 02, 2012· In addition, those enhancements are greatly reduced as the fields decay away from the Si/metal interfaces. Therefore, localized plasmonic resonances can be used as efficient light trapping schemes for ultrathin Si solar cells (< 50 nm), while photonic guided mode enhancement is more appropriate for thicker films. PMID: 22828618. Publication Types:

Enhanced Light Trapping in Thin Film Solar Cells Using a ...

Jan 28, 2015· Incorporating plasmonic structures into the back spacer layer of thin film solar cells (TFSCs) is an efficient way to improve their performance. The fishnet structure is used to enhance light trapping. Unlike other previously suggested discrete plasmonic particles, the fishnet is an electrically connected wire mesh that does not result in light field localization, which leads to high ...

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Optimization of the perfect absorber for solar energy ...

Jun 11, 2021· The effects of materials, geometric parameters, and morphologies on the absorption properties of absorbers with the cone-like nanostructures surrounded by water have been numerically studied. The underlying mechanisms of the perfect absorption of solar energy are revealed by gradient index effect with electric field distributions.

Plasmonic light trapping for enhanced light absorption in ...

Dec 22, 2017· Ultrathin cells have gained increasing attention due to their potential for reduced weight, reduced cost and increased flexibility. However, the light absorption in ultrathin cells is usually very weak compared to the corresponding bulk cells. To achieve enhanced photon absorption in ultrathin thermophotovoltaic (TPV) cells, this work proposed a film-coupled metamaterial structure made of ...

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