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A 3D porous architecture of Si/graphene nanocomposite as high-performance anode materials for Li-ion batteries

机译:Si /石墨烯纳米复合材料的3D多孔结构作为锂离子电池的高性能阳极材料

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摘要

A 3D porous architecture of Si/graphene nanocomposite has been rationally designed and constructed through a series of controlled chemical processes. In contrast to random mixture of Si nanoparticles and graphene nanosheets, the porous nanoarchitectured composite has superior electrochemical stability because the Si nanoparticles are firmly riveted on the graphene nanosheets through a thin SiO_x layer. The 3D graphene network enhances electrical conductivity, and improves rate performance, demonstrating a superior rate capability over the 2D nanostructure. This 3D porous architecture can deliver a reversible capacity of ~900 mA h g~(-1) with very little fading when the charge rates change from 100 mA g~(-1) to 1 A g~(-1). Furthermore, the 3D nanoarchitechture of Si/graphene can be cycled at extremely high Li~+ extraction rates, such as 5 A g~(-1) and 10 A g~(-1), for over than 100 times. Both the highly conductive graphene network and porous architecture are considered to contribute to the remarkable rate capability and cycling stability, thereby pointing to a new synthesis route to improving the electrochemical performances of the Si-based anode materials for advanced Li-ion batteries.
机译:Si /石墨烯纳米复合材料的3D多孔结构已通过一系列受控化学过程进行了合理设计和构建。与硅纳米颗粒和石墨烯纳米片的无规混合物相比,多孔纳米结构复合材料具有优异的电化学稳定性,因为硅纳米颗粒通过薄的SiO_x层牢固地铆接在石墨烯纳米片上。 3D石墨烯网络增强了电导率并改善了速率性能,证明了其优于2D纳米结构的速率能力。当电荷速率从100 mA g〜(-1)变为1 A g〜(-1)时,这种3D多孔结构可提供约900 mA h g〜(-1)的可逆容量,而几乎不会褪色。此外,Si /石墨烯的3D纳米体系结构可以以极高的Li〜+萃取速率(例如5 A g〜(-1)和10 A g〜(-1))循环超过100次。高导电性石墨烯网络和多孔结构均被认为有助于显着的速率能力和循环稳定性,从而为改善高级锂离子电池用硅基负极材料的电化学性能提供了一条新的合成途径。

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