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北京石油化工学院2026年研究生招生接收调剂公告
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aishan

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[资源] 赵东元院士课题组最新jacs:二维介孔碳纳米片及其石墨烯纳米片的合成

报道了一种新的溶液沉积法合成了前所未有的二维有序介孔碳纳米片的方法,并通过碳化可以进一步转换成介孔的石墨烯薄片。被认为是一种非常有前景的能力储存材料。文章7页,引文51篇。

We report a new solution deposition method to synthesize an unprecedented type of two-dimensional ordered mesoporous carbon nanosheets via a controlled low-concentration monomicelle close-packing assembly approach. These obtained carbon nanosheets possess only one layer of ordered mesopores on the surface of a substrate, typically the inner walls of anodic aluminum oxide pore channels, and can be further converted into mesoporous graphene nanosheets by carbonization. The atomically flat graphene layers with mesopores provide high surface area for lithium ion adsorption and intercalation, while the ordered mesopores perpendicular to the graphene layer enable efficient ion transport as well as volume expansion flexibility, thus representing a unique orthogonal architecture for excellent lithium ion storage capacity and cycling performance. Lithium ion battery anodes made of the mesoporous graphene nanosheets have exhibited an excellent reversible capacity of 1040 mAh/g at 100 mA/g, and they can retain at 833 mAh/g even after numerous cycles at varied current densities. Even at a large current density of 5 A/g, the reversible capacity is retained around 255 mAh/g, larger than for most other porous carbon-based anodes previously reported, suggesting a remarkably promising candidate for energy storage


[ Last edited by aishan on 2013-1-18 at 09:17 ]
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