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    The Energy Storage and Distributed Resources Division (ESDR) works on developing advanced batteries and fuel cells for transportation and stationary energy storage, grid-connected technologies for a cleaner, more reliable, resilient, and cost-effective future, and demand responsive and distributed energy technologies for a dynamic electric grid.

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    We work closely with academic, government and industry partners to conduct foundational and applied research that provides the groundwork for the development of transformative new energy technologies in the areas of energy storage and conversion, electrical grid, advanced materials for the energy infrastructure, science of manufacturing and water-energy nexus.

    Visit our focus areas and research groups at the right to find out more.

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    • Transportation
    • The Electricity Grid
    • Water-Energy Nexus
    • Science of Manufacturing
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    • Grid Integration
    • Energy Storage
    • Energy Conversion
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Publications

Publications by Category

  • Applied Energy Materials
  • Energy Conversion
  • Energy Storage
  • Grid Integration
  • Laser Technologies
  • Thermal Energy

2020

Soniat, Marielle, Meron Tesfaye, Amirhossein Mafi, Daniel J. Brooks, Nicholas D. Humphrey, Lien‐Chun Weng, Boris Merinov, William A. Goddard, Adam Z. Weber, and Frances A. Houle."Permeation of CO2 and N2 through glassy poly(dimethyl phenylene) oxide under steady‐ and presteady‐state conditions."Journal of Polymer Science 58.9 (2020) 1207 - 1228. DOI

2018

Tesfaye, Meron, and Ahmet Kusoglu."Impact of Co-Alloy Leaching and Cation in Ionomer Thin-Films."ECS Transactions 86.13 (2018) 359 - 367. DOI
Tesfaye, Meron, Andrew N. MacDonald, Peter Dudenas, Ahmet Kusoglu, and Adam Z. Weber."Exploring substrate/ionomer interaction under oxidizing and reducing environments."Electrochemistry Communications 87 (2018) 86 - 90. DOI
Soniat, Marielle, Meron Tesfaye, Daniel Brooks, Boris Merinov, William A. Goddard, Adam Z. Weber, and Frances A. Houle."Predictive simulation of non-steady-state transport of gases through rubbery polymer membranes."Polymer 134 (2018) 125 - 142. DOI

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