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      Temperature and color management of silicon solar cells for building integrated photovoltaic

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          Abstract

          Color management of integrated photovoltaics must meet two criteria of performance: provide maximum conversion efficiency and allow getting the chosen colors with an appropriate brightness, more particularly when using side by side solar cells of different colors. As the cooling conditions are not necessarily optimal, we need to take into account the influence of the heat transfer and temperature. In this article, we focus on the color space and brightness achieved by varying the antireflective properties of flat silicon solar cells. We demonstrate that taking into account the thermal effects allows freely choosing the color and adapting the brightness with a small impact on the conversion efficiency, except for dark blue solar cells. This behavior is especially true when heat exchange by convection is low. Our optical simulations show that the perceived color, for single layer ARC, is not varying with the position of the observer, whatever the chosen color. The use of a double layer ARC adds flexibility to tune the wanted color since the color space is greatly increased in the green and yellow directions. Last, choosing the accurate material allows both bright colors and high conversion efficiency at the same time.

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          Most cited references26

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          Mid-infrared optical properties of thin films of aluminum oxide, titanium dioxide, silicon dioxide, aluminum nitride, and silicon nitride.

          The complex refractive index components, n and k, have been studied for thin films of several common dielectric materials with a low to medium refractive index as functions of wavelength and stoichiometry for mid-infrared (MIR) wavelengths within the range 1.54-14.29 μm (700-6500 cm(-1)). The materials silicon oxide, silicon nitride, aluminum oxide, aluminum nitride, and titanium oxide are prepared using room temperature reactive sputter deposition and are characterized using MIR variable angle spectroscopic ellipsometry. The investigation shows how sensitive the refractive index functions are to the O2 and N2 flow rates, and for which growth conditions the materials deposit homogeneously. It also allows conclusions to be drawn on the degree of amorphousness and roughness. To facilitate comparison of the materials deposited in this work with others, the index of refraction was also determined and provided for the near-IR and visible ranges of the spectrum. The results presented here should serve as a useful information base for designing optical coatings for the MIR part of the electromagnetic spectrum. The results are parameterized to allow them to be easily used for coating design.
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            A unified mobility model for device simulation—I. Model equations and concentration dependence

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              Parameterized transmittance model for direct beam and circumsolar spectral irradiance

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                Author and article information

                Journal
                epjpv
                https://www.epj-pv.org
                EPJ Photovoltaics
                EPJ Photovolt.
                EDP Sciences
                2105-0716
                29 January 2018
                29 January 2018
                2018
                : 9
                : ( publisher-idID: epjpv/2018/01 )
                : 1
                Affiliations
                [1 ] Univ Lyon, CNRS, INSA-Lyon, Université Claude Bernard Lyon 1, CETHIL UMR5008, , 69621 Villeurbanne, France,
                [2 ] Université de Lyon, Institut des Nanotechnologies de Lyon INL – UMR5270 CNRS INSA Lyon, , 69621 Villeurbanne, France,
                Author notes
                Author information
                https://orcid.org/0000-0002-0901-1684
                https://orcid.org/0000-0002-9713-5803
                https://orcid.org/0000-0002-4144-3786
                Article
                pv170013
                10.1051/epjpv/2017008
                26b68560-b8df-404a-bc85-2bedcdeb0549
                © M. Amara et al., published by EDP Sciences, 2018

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 27 March 2017
                : 12 July 2017
                : 7 September 2017
                Page count
                Figures: 20, Tables: 2, Equations: 14, References: 34, Pages: 11
                Categories
                Modelling
                Special Issue: French PV Days 2016
                Regular Article
                Custom metadata
                national-agreement-fr_2017
                yes
                EPJ Photovoltaics 9, 1 (2018)
                2018
                2018
                2018

                Sustainable & Green chemistry,Materials technology,Semiconductors,Materials for energy,Technical & Applied physics,Renewable energy
                silicon solar cell,thermal management,ARC,CIE 1931 color space,operating temperature,conversion efficiency,BIPV

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