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Part A: Materials Science

Connecting electronic entropy to empirically accessible electronic properties in high temperature systems

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Pages 3041-3053 | Received 23 Apr 2016, Accepted 19 Jul 2016, Published online: 09 Sep 2016

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Charles C. Rinzler & A. Allanore. (2017) A thermodynamic basis for the electronic properties of molten semiconductors: the role of electronic entropy. Philosophical Magazine 97:8, pages 561-571.
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Articles from other publishers (8)

Natalia Cortés, Patricio Vargas & S. E. Ulloa. (2023) Entropy and Seebeck signals meet on the edges. Physical Review B 107:7.
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Antoine Allanore. (2021) Electrochemical Methods for the Study of Liquid Metals: Highlights from Metallurgical Transactions. Metallurgical and Materials Transactions B 52:6, pages 3671-3687.
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J. Paras & A. Allanore. (2021) Contribution of electronic entropy to the order-disorder transition of . Physical Review Research 3:2.
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J. Paras & A. Allanore. (2020) Electronic entropy contribution to the metal insulator transition in . Physical Review B 102:16.
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Nicolás Pérez, Constantin Wolf, Alexander Kunzmann, Jens Freudenberger, Maria Krautz, Bruno Weise, Kornelius Nielsch & Gabi Schierning. (2020) Entropy of Conduction Electrons from Transport Experiments. Entropy 22:2, pages 244.
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Caspar Stinn & Antoine Allanore. (2018) Thermodynamic and Structural Study of the Copper-Aluminum System by the Electrochemical Method Using a Copper-Selective Beta″ Alumina Membrane. Metallurgical and Materials Transactions B 49:6, pages 3367-3380.
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Caspar Stinn, Katsuhiro Nose, Toru Okabe & Antoine Allanore. (2017) Experimentally Determined Phase Diagram for the Barium Sulfide-Copper(I) Sulfide System Above 873 K (600 °C). Metallurgical and Materials Transactions B 48:6, pages 2922-2929.
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Youyang Zhao, Charles Rinzler & Antoine Allanore. (2016) Molten Semiconductors for High Temperature Thermoelectricity. ECS Journal of Solid State Science and Technology 6:3, pages N3010-N3016.
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