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Rational Design of Low Cost and High Energy Lithium Batteries through Tailored Fluorine-free Electrolyte and Nanostructured S/C Composite

Academic Article
Publication Date:
2018
abstract:
We report a new Li-S cell concept based on an optimized F-free catholyte solution and a high loading nanostructured C/S composite cathode. The Li2S8 present in the electrolyte ensures both buffering against active material dissolution and Li+ conduction. The high S loading is obtained by confining elemental S (?80%) in the pores of a highly ordered mesopores carbon (CMK3). With this concept we demonstrate stabilization of a high energy density and excellent cycling performance over 500cycles. This Li-S cell has a specific capacity that reaches over 1000mAhg-1, with an overall S loading of 3.6mgcm-2 and low electrolyte volume (i.e., 10?Lcm-2), resulting in a practical energy density of 365Whkg-1. The Li-S system proposed thus meets the requirements for large scale energy storage systems and is expected to be environmentally friendly and have lower cost compared with the commercial Li-ion battery thanks to the removal of both Co and F from the overall formulation.
Iris type:
01.01 Articolo in rivista
Keywords:
Batteries; Composite; Electrolyte; Li-S battery; Lithium-ion
List of contributors:
Brutti, Sergio
Handle:
https://iris.cnr.it/handle/20.500.14243/348442
Published in:
CHEMSUSCHEM (WEINH., PRINT)
Journal
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