Highly Dual-Heteroatom-Doped Ultrathin Carbon Nanosheets with Expanded Interlayer Distance for Efficient Energy Storage

ACS Sustainable Chemistry & Engineering(2018)

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摘要
Larger interlayer distance and higher doping efficiency of heteroatoms are considered to be the two most effective solutions to modulate the electronic structure of carbon materials to achieve improved electrochemical storage performances. Here, an innovative popping process is applied to puff biomaterials, i.e., the Chinese “five grains” of round-grained rice and wheat, into aerogels using the traditional Chinese popcorn machine. Thus, well-defined and interconnected three-dimensional pores are constructed within the biomaterial-derived carbon aerogels after a one-step pyrolysis process. As a result, the interlayer distance of the carbon nanosheets is slightly expanded from ∼3.6 to ∼3.7 A, providing more expanded channels for rapid diffusion and adsorption of heteroatom precursors on the surface of the carbon layers. Therefore, a high amount of nitrogen and sulfur incorporation has been realized in the pyrolyzed carbon nanosheets, which further expand the interlayer distance between the carbon layers fro...
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关键词
Biomaterial,Ultrathin carbon nanosheet,Dual-heteroatom doping,Supercapacitor,Lithium-ion battery
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