Anthony V. Powell

Affiliations: 
Chemistry University of Reading, UK, Earley, England, United Kingdom 
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Publications

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Mangelis P, Vaqueiro P, Powell AV. (2020) Improved Thermoelectric Performance through Double Substitution in Shandite-Type Mixed-Metal Sulfides. Acs Applied Energy Materials. 3: 2168-2174
Long SO, Powell AV, Hull S, et al. (2020) Jahn–Teller Driven Electronic Instability in Thermoelectric Tetrahedrite Advanced Functional Materials. 30: 1909409
Mangelis P, Aziz A, da Silva I, et al. (2019) Understanding the origin of disorder in kesterite-type chalcogenides AZnBQ (A = Cu, Ag; B = Sn, Ge; Q = S, Se): the influence of inter-layer interactions. Physical Chemistry Chemical Physics : Pccp
Powell AV. (2019) Recent developments in Earth-abundant copper-sulfide thermoelectric materials Journal of Applied Physics. 126: 100901
Guélou GPL, Powell AV, Smith RI, et al. (2019) The impact of manganese substitution on the structure and properties of tetrahedrite Journal of Applied Physics. 126: 45107
Beltrán-Pitarch B, Prado-Gonjal J, Powell AV, et al. (2019) Experimental conditions required for accurate measurements of electrical resistivity, thermal conductivity, and dimensionless figure of merit (ZT) using Harman and impedance spectroscopy methods Journal of Applied Physics. 125: 025111
Beltrán-Pitarch B, Prado-Gonjal J, Powell AV, et al. (2019) Complete Characterization of Thermoelectric Materials by Impedance Spectroscopy Journal of Physical Chemistry C
Beltrán-Pitarch B, Prado-Gonjal J, Powell AV, et al. (2018) Thermal conductivity, electrical resistivity, and dimensionless figure of merit (ZT) determination of thermoelectric materials by impedance spectroscopy up to 250 °C Journal of Applied Physics. 124: 025105
Prado-Gonjal J, Phillips M, Vaqueiro P, et al. (2018) Skutterudite Thermoelectric Modules with High Volume-Power-Density: Scalability and Reproducibility Acs Applied Energy Materials. 1: 6609-6618
Long SOJ, Powell AV, Vaqueiro P, et al. (2018) High Thermoelectric Performance of Bornite through Control of the Cu(II) Content and Vacancy Concentration Chemistry of Materials
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