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Boron doped graphene quantum structure and MoS                                                 2                                                  nanohybrid as anode materials for highly reversible lithium storage
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Boron doped graphene quantum structure and MoS 2 nanohybrid as anode materials for highly reversible lithium storage

Riyanto, Imam Sahroni, Kartick Bindumadhavan, Pei-Yi ChangRuey-An Doong
Frontiers in Chemistry, 卷.7(MAR), 116
2019

摘要

Anode materials Boron-doped graphene quantum structures (BGQS) Cycling stability MoS 2 Reversible capacity Chemistry (all)
Herein, the boron-doped graphene quantum structure (BGQS), which contains both the advantages of 0-D graphene quantum dot and 2-D reduced graphene oxide, has been fabricated by top-down hydrothermal method and then mixed with molybdenum sulfide (MoS 2 ) to serve as an active electrode material for the enhanced electrochemical performance of lithium ion battery. Results show that 30 wt% of BGQS/MoS 2 nanohybrid delivers the superior electrochemical performance in comparison with other BGQS/MoS 2 and bare components. A highly reversible capacity of 3,055 mAh g -1 at a current density of 50 mA g -1 is achieved for the initial discharge and a high reversible capacity of 1,041 mAh g -1 is obtained at 100 mA g -1 after 50 cycles. The improved electrochemical performance in BGQS/MoS 2 nanohybrid is attributed to the well exfoliated MoS 2 structures and the presence of BGQS, which can provide the vitally nano-dimensional contact for the enhanced electrochemical performance. Results obtained in this study clearly demonstrate that BGQS/MoS 2 is a promising material for lithium ion battery and can open a pathway to fabricate novel 2-D nanosheeted nanocomposites for highly reversible Li storage application.

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https://doi.org/10.3389/fchem.2019.00116檢視
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