Richards, Bryce S.

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Journal Article

Joseph, Reetu E.; Hudry, Damien; Busko, Dmitry; Biner, Daniel; Turshatov, Andrey; Krämer, Karl; Richards, Bryce S.; Howard, Ian A. (2021). Bright constant color upconversion based on dual 980 and 1550 nm excitation of SrF2:Yb3+, Er3+ and β-NaYF4:Yb3+, Er3+ micropowders― considerations for persistence of vision displays. Optical materials, 111, p. 110598. Elsevier 10.1016/j.optmat.2020.110598

Joseph, Reetu E.; Jiménez, Carlos; Hudry, Damien; Gao, Guojun; Busko, Dmitry; Biner, Daniel; Turshatov, Andrey; Krämer, Karl; Richards, Bryce S.; Howard, Ian A. (2019). Critical Power Density: A Metric To Compare the Excitation Power Density Dependence of Photon Upconversion in Different Inorganic Host Materials. Journal of physical chemistry. A, 123(31), pp. 6799-6811. American Chemical Society 10.1021/acs.jpca.9b03851

Joseph, Reetu E.; Busko, D; Hudry, Damien; Gao, G.; Biner, Daniel; Krämer, Karl; Turshatov, A.; Richards, Bryce S.; Howard, I. A. (2018). A method for correcting the excitation power density dependence of upconversion emission due to laser-induced heating. Optical materials, 82, pp. 65-70. North-Holland 10.1016/j.optmat.2018.05.025

Arnaoutakis, Georgios E.; Marques-Hueso, Jose; Ivaturi, Aruna; Fischer, Stefan; Goldschmidt, Jan C; Krämer, Karl; Richards, Bryce S. (2015). Enhanced energy conversion of up-conversion solar cells by the integration of compound parabolic concentrating optics. Solar energy materials and solar cells, 140, pp. 217-223. North-Holland 10.1016/j.solmat.2015.04.020

Arnaoutakis, Georgios E.; Marques-Hueso, Jose; Ivaturi, Aruna; Krämer, Karl; Fischer, Stefan; Goldschmidt, Jan Christoph; Richards, Bryce S. (2014). Enhanced up-conversion for photovoltaics via concentrating integrated optics. Optics express, 22(S2), A452-A464. Optical Society of America 10.1364/OE.22.00A452

Rüdiger, Marc; Fischer, Stefan; Frank, Judith; Ivaturi, Aruna; Richards, Bryce S.; Krämer, Karl; Hermle, Martin; Goldschmidt, Jan Christoph (2014). Bifacial n-type silicon solar cells for upconversion applications. Solar energy materials and solar cells, 128, pp. 57-68. North-Holland 10.1016/j.solmat.2014.05.014

MacDougall, Sean K.W.; Ivaturi, Aruna; Marques-Hueso, Jose; Krämer, Karl; Richards, Bryce S. (2014). Broadband photoluminescent quantum yield optimisation of Er3+-doped β-NaYF4 for upconversion in silicon solar cells. Solar energy materials and solar cells, 128, pp. 18-26. North-Holland 10.1016/j.solmat.2014.05.004

Fischer, Stefan; Ivaturi, Aruna; Frohlich, Benjamin; Rudiger, Marc; Richter, Armin; Krämer, Karl; Richards, Bryce S.; Goldschmidt, Jan Christoph (2014). Upconverter Silicon Solar Cell Devices for Efficient Utilization of Sub-Band-Gap Photons Under Concentrated Solar Radiation. IEEE journal of photovoltaics, 4(1), pp. 183-189. Institute of Electrical and Electronics Engineers IEEE 10.1109/JPHOTOV.2013.2282744

Ivaturi, Aruna; MacDougall, Sean K. W.; Martín-Rodríguez, Rosa; Quintanilla, Marta; Marques-Hueso, Jose; Krämer, Karl; Meijerink, Andries; Richards, Bryce S. (2013). Optimizing infrared to near infrared upconversion quantum yield of β-NaYF4:Er3+ in fluoropolymer matrix for photovoltaic devices. Journal of applied physics, 114(1), 013505. Melville, N.Y.: American Institute of Physics 10.1063/1.4812578

Martín-Rodríguez, Rosa; Fischer, Stefan; Ivaturi, Aruna; Froehlich, Benjamin; Krämer, Karl; Goldschmidt, Jan C.; Richards, Bryce S.; Meijerink, Andries (2013). Highly Efficient IR to NIR Upconversion in Gd2O2S: Er3+ for Photovoltaic Applications. Chemistry of materials, 25(9), pp. 1912-1921. Washington, D.C.: American Chemical Society 10.1021/cm4005745

MacDougall, Sean K. W.; Aruna, Ivaturi; Marques-Hueso, Jose; Krämer, Karl W.; Richards, Bryce S. (2012). Ultra-high photoluminescent quantum yield of beta-NaYF4: 10% Er3+ via broadband excitation of upconversion for photovoltaic devices. Optics express, 51(15), pp. 8385-8393. Washington, D.C.: Optical Society of America

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