Department of Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240 (PR China).
ChemSusChem. 2014 Feb;7(2):563-9. doi: 10.1002/cssc.201300742. Epub 2013 Oct 23.
Composite materials of porous pyrolyzed polyacrylonitrile-sulfur@graphene nanosheet (pPAN-S@GNS) are fabricated through a bottom-up strategy. Microspherical particles are formed by spray drying of a mixed aqueous colloid of PAN nanoparticles and graphene nanosheets, followed by a simple heat treatment with elemental sulfur. The pPAN-S primary nanoparticles are wrapped homogeneously and loosely within a three-dimensional network of graphene nanosheets (GNS). The hierarchical pPAN-S@GNS composite shows a high reversible capacity of 1449.3 mAh g(-1) sulfur or 681.2 mAh g(-1) composite in the second cycle; after 300 cycles at a 0.2 C charge/discharge rate the capacity retention is 88.8 % of its initial reversible value. Additionally, the coulombic efficiency (CE) during cycling is near 100 %, apart from in the first cycle, in which CE is 81.1 %. A remarkable capacity of near 700 mAh g(-1) sulfur is obtained, even at a high discharge rate of 10 C. The superior performance of pPAN-S@GNS is ascribed to the spherical secondary GNS structure that creates an electronically conductive 3D framework and also reinforces structural stability.
通过自下而上的策略制备了多孔热解聚丙烯腈-硫@graphene 纳米片(pPAN-S@GNS)复合材料。通过 PAN 纳米粒子和 graphene 纳米片的混合水胶体喷雾干燥形成微球形颗粒,然后用元素硫进行简单的热处理。pPAN-S 初级纳米颗粒均匀且松散地包裹在 graphene 纳米片(GNS)的三维网络中。分层的 pPAN-S@GNS 复合材料在第二周期中显示出高可逆容量 1449.3 mAh g(-1) 硫或 681.2 mAh g(-1) 复合材料;在 0.2 C 充放电速率下循环 300 次后,其初始可逆值的容量保持率为 88.8%。此外,除了第一个循环中 CE 为 81.1%之外,循环过程中的库仑效率(CE)接近 100%。即使在 10 C 的高放电速率下,也可以获得近 700 mAh g(-1) 硫的优异容量。pPAN-S@GNS 的优异性能归因于球形二级 GNS 结构,该结构创造了一个电子导电的 3D 框架,并增强了结构稳定性。