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Impact of cycling at low temperatures on the safety behavior of 18650-type lithium ion cells: Combined study of mechanical and thermal abuse testing accompanied by post-mortem analysis Friesen A, Horsthemke F, Monnighoff X, Brunklaus G, Krafft R, Borner M, Risthaus T, Winter M, Schappacher FM Journal of Power Sources, 334, 1, 2016 |
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Reducing Li-ion safety hazards through use of non-flammable solvents and recent work at Sandia National Laboratories Nagasubramanian G, Fenton K Electrochimica Acta, 101, 3, 2013 |
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Thermal runaway potential of LiCoO2 and Li(Ni1/3Co1/3Mn1/3)O-2 batteries determined with adiabatic calorimetry methodology Jhu CY, Wang YW, Wen CY, Shu CM Applied Energy, 100, 127, 2012 |
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Simulation of abuse tolerance of lithium-ion battery packs Spotnitz RM, Weaver J, Yeduvaka G, Doughty DH, Roth EP Journal of Power Sources, 163(2), 1080, 2007 |
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Thermal abuse performance of high-power 18650 Li-ion cells Roth EP, Doughty DH Journal of Power Sources, 128(2), 308, 2004 |
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DSC investigation of exothermic reactions occurring at elevated temperatures in lithium-ion anodes containing PVDF-based binders Roth EP, Doughty DH, Franklin J Journal of Power Sources, 134(2), 222, 2004 |