Communication—Microscopic View of the Ethylene Carbonate Based Lithium-Ion Battery Electrolyte by X-ray Scattering
Zhange Feng, Erik Sarnello, Tao Li, Lei Cheng
Abstract
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Zhange Feng, Erik Sarnello, Tao Li, Lei Cheng
Abstract
Open-access reader
Small angle X-ray scattering studies are conducted to gain insight of the microscopic structures on LiPF 6 /carbonates battery electrolyte. The result shows that ethylene carbonate (EC), with a cyclic structure, forms nanoclusters of ∼ 1 nm in linear carbonates ethyl methyl carbonate (EMC), diethyl carbonate (DEC), while it fully dissolves in a cyclic carbonate, propylene carbonate (PC). The ion pair of LiPF 6 in carbonates is measured to be ∼ 6 Å in dimension, corresponding to the form of contact ion pair. The new microscopic structure the battery electrolyte reported herein is important for the understanding of non-ideal behavior of LiPF 6 carbonate based electrolyte and thus the design of new electrolyte.
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Small angle X-ray scattering studies are conducted to gain insight of the microscopic structures on LiPF 6 /carbonates battery electrolyte. The result shows that ethylene carbonate (EC), with a cyclic structure, forms nanoclusters of ∼ 1 nm in linear carbonates ethyl methyl carbonate (EMC), diethyl carbonate (DEC), while it fully dissolves in a cyclic carbonate, propylene carbonate (PC). The ion pair of LiPF 6 in carbonates is measured to be ∼ 6 Å in dimension, corresponding to the form of contact ion pair. The new microscopic structure the battery electrolyte reported herein is important for the understanding of non-ideal behavior of LiPF 6 carbonate based electrolyte and thus the design of new electrolyte.
Key concepts: Ethylene carbonate, Electrolyte, Diethyl carbonate, Carbonate, Propylene carbonate, Dimethyl carbonate, Battery (electricity), Chemistry