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One-Step LCVD Fabrication of Binder-Free Porous Graphene@SiC Heterostructures for Lithium-Ion Battery Anodes. [PDF]
Zhang S +7 more
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Mil-101(Cr)-Nh₂/Gallium Composites for Enhanced Thermal Management in Lithium-Ion Batteries
Xiangrong Li +4 more
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High-Selectivity Separation of Lithium from Spent Lithium-Ion Battery Leachates Using Surface-Modified Commercial Nanofiltration Membranes. [PDF]
Yao X +6 more
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Thermal Runaway Temperature Prediction of Lithium-Ion Battery Under Extreme High-Temperature Shock Using Experimental and Virtual Data. [PDF]
Li X +6 more
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Experimental and Modeling Study of Electrochemical and Thermal Behavior of Lithium-ion Batteries
Soham Neupane
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Transport Energy – Lithium Ion Batteries
2014This chapter focuses on the technological status and most common chemistries of lithium ion batteries. According to IEA, in the year 2012, the global stock of plug-in hybrid electric vehicles (PEHVs) and electric vehicles (EVs) amounted to more than 18 0000, representing only 0.02 % of all vehicles.
Salminen, Justin +5 more
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