Construction
of a Unique Two-Dimensional Hierarchical Carbon Architecture for Superior
Lithium-Ion Storage
Posted on 2016-11-23 - 00:00
Two-dimensional
nanocarbons are intriguing functional materials for energy storage.
However, the serious aggregation problems hinder their wider applications.
To address this issue, we developed a unique two-dimensional hierarchical
carbon architecture (2D-HCA) with ultrasmall graphene-like carbon
nanosheets uniformly grown on hexagonal carbon nanoplates. The obtained
2D-HCA shows an interconnected porous structure and abundant heteroelement
doping. When employed as anode for lithium ion batteries, it exhibits
a high discharge capacity of 748 m Ah g–1 even after
400 cycles at 2 A g–1.
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Wang, Zhijie; Yu, Xiaoliang; He, Wenhui; Kaneti, Yusuf Valentino; Han, Da; Sun, Qi; et al. (2016). Construction
of a Unique Two-Dimensional Hierarchical Carbon Architecture for Superior
Lithium-Ion Storage. ACS Publications. Collection. https://doi.org/10.1021/acsami.6b12570