Dale A. Hitchcock, Ph.D.

Affiliations: 
2014 Physics Clemson University, Clemson, SC, United States 
Area:
Condensed Matter Physics, Materials Science Engineering
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"Dale Hitchcock"
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Parents

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Terry M. Tritt grad student 2014 Clemson University
 (Unusually low thermal conductivity in the argyrodite Ag 8GeTe6 attributed to strong anharmonicity.)
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Publications

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Lahwal A, Zeng X, Bhattacharya S, et al. (2015) Enhancing Thermoelectric Properties of Si80Ge20 Alloys Utilizing the Decomposition of NaBH4 in the Spark Plasma Sintering Process Energies. 8: 10958-10970
Peng J, Fu L, Liu Q, et al. (2014) A study of Yb0.2Co4Sb12–AgSbTe2 nanocomposites: simultaneous enhancement of all three thermoelectric properties Journal of Materials Chemistry. 2: 73-79
Dudy L, Denlinger JD, Allen JW, et al. (2013) Photoemission spectroscopy and the unusually robust one-dimensional physics of lithium purple bronze Journal of Physics Condensed Matter. 25
Hitchcock D, Waldrop S, Williams J, et al. (2013) A modified Van der Pauw setup for measuring the resistivity and thermopower of thermoelectric materials of varying thicknesses Functional Materials Letters. 6
Hitchcock D, Liu YL, Liu Y, et al. (2013) Low temperature thermoelectric properties and aging phenomena of nanostructured p-type Bi2-XSbXTe3 (x = 1.46, 1.48, 1.52 and 1.55) Functional Materials Letters. 6
Holgate TC, Liu Y, Hitchcock D, et al. (2013) Thermoelectric properties of Li-intercalated ZrSe2 single crystals Journal of Electronic Materials. 42: 1751-1755
Thompson D, Hitchcock D, Lahwal A, et al. (2012) Single-element spark plasma sintering of silicon germanium Emerging Materials Research. 1: 299-305
Xie W, Hitchcock DA, Kang HJ, et al. (2012) The microstructure network and thermoelectric properties of bulk (Bi,Sb) 2Te 3 Applied Physics Letters. 101
Keskar G, Iyyamperumal E, Hitchcock DA, et al. (2012) Significant improvement of thermoelectric performance in nanostructured bismuth networks Nano Energy. 1: 706-713
Hitchcock D, Yang K, He J, et al. (2011) Electrical transport properties of single-walled carbon nanotube bundles treated with boric acid Nano. 6: 337-341
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