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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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  • Research +

    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.

    Broad Challenges We Face +
    • Transportation
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    • Science of Manufacturing
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    • Grid Integration
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      • The John S. Newman Early Career Scientist
    • Energy Conversion
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Publications

Publications by Category

  • Applied Energy Materials
  • Energy Conversion
  • Energy Storage
  • Grid Integration
  • Laser Technologies
  • Thermal Energy
X Author: Joong Sun Park

2015

Park, Joong Sun, Lei Cheng, Vassilia Zorba, Apurva Mehta, Jordi Cabana, Guoying Chen, Marca M Doeff, Thomas J Richardson, Jung Hoon Park, Ji-Won Son, and Wan-Shick Hong."Effects of Crystallinity and Impurities on the Electrical Conductivity of Li-La-Zr-O Thin Films."Thin Solid Films 576 (2015) 55-60. DOI

2014

Cheng, Lei, Joong Sun Park, Huaming Hou, Vassilia Zorba, Guoying Chen, Thomas J Richardson, Jordi Cabana, Richard E Russo, and Marca M Doeff."Effect of microstructure and surface impurity segregation on the electrical and electrochemical properties of dense Al-substituted Li7La3Zr2O12."Journal of Materials Chemistry A 2.1 (2014) 172-181. DOI

2013

Park, Jung Hoon, Wan-Shick Hong, Joong Sun Park, Lei Cheng, Jordi Cabana, Guoying Chen, Marca M Doeff, Yuyi Li, Thomas J Richardson, and Ji-Won Son."Aluminum Migration during Deposition of Li7La3Zr2O12 Thin Films on Aluminum Oxide Substrates."ECS Transactions 53.36 (2013) 1-4. DOI

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