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ARPA-E PROJECT SELECTIONS – ROBUST AFFORDABLE NEXT GENERATION EV-STORAGE (RANGE) Published: August 21, 2013 Last Updated: August 21, 2013 These projects have been selected for negotiation of awards; final award amounts
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Document Date: 2013-08-21 16:35:22


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City

Houston / Emeryville / Pasadena / Louisville / Salt Lake City / Los Angeles / /

Company

General Electric / Jet Propulsion Laboratory / Amount Lead Organization Location (City State) Cloteam LLC / Impact-Resistant Electrolyte Oak Ridge National Laboratory / The National Renewable Energy Laboratory / Oak Ridge National Laboratory / UT Solid Power LLC / U.S. Naval Research Laboratory / PA Project Title Project Description Low-Cost Electric Vehicle Battery Architecture Cloteam LLC / TX EnZinc Inc. / BASF / /

Currency

USD / /

Event

Business Partnership / /

Facility

DC Princeton University / Penn State University / University of Houston / Structural Battery Power Panels Pennsylvania State University / University of California Los Angeles / College Park / Flow Battery The National Renewable Energy Laboratory / IN Impact-Tolerant EV Batteries Purdue University / CA Project Title Project Description Advanced Aqueous Lithium-Ion Batteries The University of Houston / MA Stanford University / Ceramic Electrolyte The University of Maryland / Arizona State University / Multiple-Electron Aqueous Battery The University of Maryland / EVs Arizona State University / U.S. Naval Research Laboratory / EVs Princeton University / University Park / Acid-Based Battery The University of California / Multifunctional Battery Chassis Systems Stanford University / University of Maryland / Purdue University / EVs The Illinois Institute of Technology / NY Metal Hydride-Air Battery Jet Propulsion Laboratory / University of California / Electric Vehicles The University of California / Illinois Institute of Technology / /

IndustryTerm

high-energy chemistry / transportation / battery using zinc-air technology / greater energy density / stationary energy storage / lithium-ion technology / start/stop technology / energy density / high-energy density liquid / chemical energy / energy storage materials / energy / zinc-air technology / metal / flow battery using organic energy storage materials / improved energy density / low-energy density / impact energy / comparable energy density / high-energy / battery technology / multi-layer ceramics processing methods / /

Organization

University of Maryland / NY Metal Hydride-Air Battery Jet Propulsion Laboratory / Illinois Institute of Technology / Princeton University / Pennsylvania State University / Penn State University / Purdue University / Arizona State University / Stanford University / University of California Los Angeles / University of Houston / University of California / San Diego / /

Product

Impact / /

ProvinceOrState

Maryland / California / /

SportsLeague

Stanford University / /

Technology

start/stop technology / zinc-air technology / lithium-ion technology / battery using zinc-air technology / battery technology / /

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