Using in operando diffraction to relate lattice strain with degradation mechanism in a NMC battery

Author:

Jha Shikhar KrishnORCID,Charalambous HarryORCID,Okasinski John S.ORCID,Tsakalakos ThomasORCID

Funder

Office of Naval Research

U.S. Department of Energy

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference40 articles.

1. Kempener R, Borden E (2015) Battery storage for renewables: market status and technology outlook. IRENA International Energy Storage Policy and Regulation, Abu Dhabi

2. Sakti A, Michalek JJ, Fuchs ER, Whitacre JF (2015) A techno-economic analysis and optimization of Li-ion batteries for light-duty passenger vehicle electrification. J Power Sources 273:966–980

3. Chiang Y-M (2010) Building a better battery. Science 330:1485–1486

4. Doeff MM, Brodd RJ (2013) Battery cathode, in batteries for sustainability: selected entries from the encyclopedia. R.A. Meyers, New York

5. Fu K, Gong Y, Liu B et al (2017) Toward garnet electrolyte–based Li metal batteries: an ultrathin, highly effective, artificial solid-state electrolyte/metallic Li interface. Sci Adv 3(4):e1601659

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