Shashank Priya, PhD

    • 11705 Citations
    • 52 h-Index
    19982019
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    • 8 Similar Profiles
    Energy harvesting Engineering & Materials Science
    Harvesters Engineering & Materials Science
    composite materials Physics & Astronomy
    Composite materials Engineering & Materials Science
    ceramics Physics & Astronomy
    Ferroelectric materials Engineering & Materials Science
    laminates Physics & Astronomy
    Lead Engineering & Materials Science

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    Research Output 1998 2019

    An experimental system for measurements of Seebeck coefficient and electrical resistivity in bulk thermoelectric materials at high temperatures

    Wang, J., Zhao, Y., Liao, H. H., Priya, S. & Huxtable, S. T., Jun 7 2019, In : Measurement Science and Technology. 30, 7, 075901.

    Research output: Contribution to journalArticle

    Electrical Resistivity
    thermoelectric materials
    Seebeck coefficient
    Seebeck effect
    electrical resistivity

    Anisotropic Thermoelectric Performance and Sustainable Thermal Stability in Textured Ca3Co4O9/Ag Nanocomposites

    Song, M. E., Lee, H., Kang, M. G., Li, W., Maurya, D., Poudel, B. & Priya, S., Jun 24 2019, In : ACS Applied Energy Materials. 2, 6, p. 4292-4301 10 p.

    Research output: Contribution to journalArticle

    Nanocomposites
    Thermodynamic stability
    Spark plasma sintering
    Composite materials
    Texturing

    Computational study of cobalt-modified nickel-ferrite/PZT magnetoelectric composites for voltage tunable inductor applications

    Geng, L. D., Yan, Y., Priya, S. & Wang, Y. U., Mar 1 2019, In : Acta Materialia. 166, p. 493-502 10 p.

    Research output: Contribution to journalArticle

    Cobalt
    Magnetocrystalline anisotropy
    Ferrite
    Nickel
    Composite materials

    Distinct conducting layer edge states in two-dimensional (2D) halide perovskite

    Wang, K., Wu, C., Jiang, Y., Yang, D., Wang, K. & Priya, S., Jul 12 2019, In : Science Advances. 5, 7, eaau3241.

    Research output: Contribution to journalArticle

    Open Access
    halides
    conduction
    charging
    quantum wells
    electronic structure

    Energy scavenging from ultra-low temperature gradients

    Kishore, R. A., Davis, B., Greathouse, J., Hannon, A., Emery Kennedy, D., Millar, A., Mittel, D., Nozariasbmarz, A., Kang, M-G., Kang, H. B., Sanghadasa, M. & Priya, S., Mar 1 2019, In : Energy and Environmental Science. 12, 3, p. 1008-1018 11 p.

    Research output: Contribution to journalArticle

    Energy harvesting
    Scavenging
    Thermal energy
    Thermal gradients
    temperature gradient