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    The Energy Storage and Distributed Resources Division (ESDR) works to enable and accelerate the development and adoption of new advanced technologies for reliable transportation and power and energy systems.

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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.

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Publications

Publications by Category

  • Applied Energy Materials
  • Energy Conversion
  • Energy Storage
  • Grid Integration
  • Laser Technologies
  • Thermal Energy
X Author: Robert E Doe

2012

Chen, Hailong, Geoffroy Hautier, Anubhav Jain, Charles J Moore, Byoungwoo Kang, Robert E Doe, Lijun Wu, Yime Zhu, Yuanzhi Tang, and Gerbrand Ceder."Carbonophosphates: A New Family of Cathode Materials for Li-Ion Batteries Identified Computationally."Chemistry of Materials 24 (2012) 2009-2016. DOI
Ma, XiaoHui, Geoffroy Hautier, Anubhav Jain, Robert E Doe, and Gerbrand Ceder."Improved Capacity Retention for LiVO2 by Cr Substitution."Journal of the Electrochemical Society 160.2 (2012) A279-A284. DOI

2011

Hautier, Geoffroy, Anubhav Jain, Shyue P Ong, Byoungwoo Kang, Charles J Moore, Robert E Doe, and Gerbrand Ceder."Phosphates as Lithium-Ion Battery Cathodes: An Evaluation Based on High-Throughput Ab Initio Calculations."Chemistry of Materials 23.15 (2011) 3495-3508. DOI

2009

Doe, Robert E, Kristin A Persson, Geoffroy Hautier, and Gerbrand Ceder."First Principles Study of the Li-BiF Phase Diagram and Bismuth Fluoride Conversion Reactions with Lithium."Electrochemical and Solid State Letters 12.7 (2009) A125-A128. DOI

2008

Doe, Robert E, Kristin A Persson, Ying Shirley Meng, and Gerbrand Ceder."First-Principles Investigation of the Li-Fe-F Phase Diagram and Equilibrium and Nonequilibrium Conversion Reactions of Iron Fluorides with Lithium."Chemistry of Materials 20.16 (2008) 5274-5283. DOI

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