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Lithium nickel manganate is recognized as a type of promising cathode material for lithium-ion battery, due to its advantages such as high voltage, high power density, and relative lower cost. In this paper, a series of LiNixMn2 − xO4 cathode materials with various molar ratio of Ni/Mn have been prepared with a co-precipitation method, followed by a solid state...
Conventional double catalyst layer (DCL) structures show no obvious improvement in cathode performance, due to the contradiction between improving mass transfer and maintaining good platinum (Pt) utilization. To decrease this conflict, a novel DCL cathode is prepared using catalysts with two different amounts of Pt; the catalyst with higher Pt content is used in the inner layer to concentrate the...
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