Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5462783 | Materials Letters | 2017 | 4 Pages |
Abstract
SnO2 quantum dots/reduced graphene oxide (SnO2/rGO) composite has been successfully prepared by a rapid microwave-irradiation process and subsequent annealing treatment. SEM and TEM results reveal that SnO2 quantum dots with the sizes of 1-5Â nm are uniformly anchored on rGO nanosheets. The SnO2/rGO composite as an anode material presents a high initial discharge capacity of 1628Â mAh/g and maintains a reversible capacity of 797Â mAh/g after 100 cycles. After being cycled at various rates for 100 cycles, the capacity can recover to 777Â mAh/g at 100Â mA/g. The high reversible capacity, long cycling life and good rate performance can be attributed to the size effect of SnO2 quantum dots and the synergistic effect from rGO nanosheets.
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Authors
Min Huang, Miao Feng, Haojie Li, Ping Huang, Qingmei Su, Fumin Zhang, Gaohui Du,