Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology , Beijing 100190, P. R. China.
University of Chinese Academy of Sciences , Beijing 100049, P. R. China.
ACS Appl Mater Interfaces. 2017 Aug 2;9(30):25239-25249. doi: 10.1021/acsami.7b04432. Epub 2017 Jul 19.
2D hierarchically porous carbon (2D-HPC) nanosheets with unique advantages are highly desired as host materials for lithium sulfur (Li-S) batteries and other energy storage devices. Herein, we propose a self-template and organic solvent-free approach to synthesize nanosheets of monoclinic ZIF-8 at room temperature from which 2D-HPC nanosheets (ZIF-8 nanosheets carbon denoted as ZIF-8-NS-C) are derived to be an efficient sulfur immobilizer for Li-S batteries for the first time. The anisotropic nanosheets are believed to relate to the symmetry of the monoclinic structure. The 2D ZIF-8-NS-C nanosheets with embedded hierarchical pores construct an effective conductive network through "plane-to-plane" modes to endow superior electron transfer and fast electrochemical kinetics. Moreover, the nitrogen-rich feature of ZIF-8-NS-C can increase the affinity/interaction of carbon host with lithium polysulfides, favoring the cyclic performance. The sulfur/ZIF-8-NS-C (S/ZIF-8-NS-C) cathode shows a superior rate capability with high capacities of 1226 mA h g at 0.2 C and 785 mA h g at 2 C, and a sustainable cycling stability with a capacity attenuation of 0.12% per cycle at 0.5 C for 300 cycles. The approach proposed here pioneers the controllable design of MOF-based structures to inspire the exploration of more variable MOF-derived porous materials for energy storage applications.
二维层状多孔碳(2D-HPC)纳米片具有独特的优势,作为锂硫(Li-S)电池和其他储能器件的宿主材料备受期待。在此,我们提出了一种自模板和无有机溶剂的方法,在室温下从单斜 ZIF-8 合成纳米片,由此衍生出 2D-HPC 纳米片(ZIF-8 纳米片碳表示为 ZIF-8-NS-C),首次用作 Li-S 电池的高效硫固定剂。各向异性的纳米片与单斜结构的对称性有关。二维 ZIF-8-NS-C 纳米片具有嵌入式分层孔,通过“面-面”模式构建有效的导电网络,赋予其优异的电子转移和快速的电化学动力学。此外,ZIF-8-NS-C 的富氮特性可以增加碳主体与多硫化锂的亲和力/相互作用,有利于循环性能。S/ZIF-8-NS-C(S/ZIF-8-NS-C)正极具有优异的倍率性能,在 0.2 C 时具有 1226 mA h g 的高容量,在 2 C 时具有 785 mA h g 的高容量,在 0.5 C 下循环 300 次时,容量衰减率为 0.12%/循环,具有可持续的循环稳定性。这里提出的方法开创了 MOF 基结构的可控设计先河,激发了对更多可变 MOF 衍生多孔材料在储能应用中的探索。