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- W2063214906 abstract "In this paper, we developed a dual strategy, the nanostructure engineering of active material and the proper choice of binder, to achieve excellent lithium storage performance of transition metal oxides. α-Fe2O3 nanoellipses with a mean size of 180–230 nm (edge length) and 140–170 nm (edge width) were fabricated by a simple hydrothermal method in the presence of glycine. When tested as anode material for lithium ion batteries (LIBs), the α-Fe2O3 nanoellipse electrode with sodium alginate (SA) binder exhibits greatly enhanced performance for lithium storage. The capacity could be retained as high as 1164 mA h g−1 at a current density of 100 mA g−1 for over 60 cycles. Even cycled at high current densities of 2000–5000 mA g−1, high capacities of 443–628 mA h g−1 can be achieved, whereas the electrode with the conventional poly(vinylidene fluoride) (PVDF) binder suffers from rapid capacity decay under the same test conditions." @default.
- W2063214906 created "2016-06-24" @default.
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- W2063214906 date "2014-11-01" @default.
- W2063214906 modified "2023-10-17" @default.
- W2063214906 title "A dual strategy for improving lithium storage performance, a case of Fe 2 O 3" @default.
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- W2063214906 doi "https://doi.org/10.1016/j.materresbull.2014.07.008" @default.
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