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      Density Functional Calculations of Elastic and Thermal Properties of Zinc-Blende Mercury–Cadmium-Chalcogenide Ternary Alloys

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          Self-Consistent Equations Including Exchange and Correlation Effects

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            Inhomogeneous Electron Gas

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              Hybrid nanorod-polymer solar cells.

              We demonstrate that semiconductor nanorods can be used to fabricate readily processed and efficient hybrid solar cells together with polymers. By controlling nanorod length, we can change the distance on which electrons are transported directly through the thin film device. Tuning the band gap by altering the nanorod radius enabled us to optimize the overlap between the absorption spectrum of the cell and the solar emission spectrum. A photovoltaic device consisting of 7-nanometer by 60-nanometer CdSe nanorods and the conjugated polymer poly-3(hexylthiophene) was assembled from solution with an external quantum efficiency of over 54% and a monochromatic power conversion efficiency of 6.9% under 0.1 milliwatt per square centimeter illumination at 515 nanometers. Under Air Mass (A.M.) 1.5 Global solar conditions, we obtained a power conversion efficiency of 1.7%.
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                Author and article information

                Journal
                Metals and Materials International
                Met. Mater. Int.
                Springer Science and Business Media LLC
                1598-9623
                2005-4149
                October 2021
                June 17 2020
                October 2021
                : 27
                : 10
                : 3823-3838
                Article
                10.1007/s12540-020-00778-7
                43751ab1-48cf-4a99-8ded-c9e22f8021f6
                © 2021

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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