| Literature DB >> 30250811 |
Bo Yin1, Xinxin Cao1, Anqiang Pan1, Zhigao Luo1, Selvakumaran Dinesh1, Jiande Lin1, Yan Tang1, Shuquan Liang1, Guozhong Cao1,2.
Abstract
A honeycomb-like 3DEntities:
Keywords: CoSx nanocrystals; N/S co‐doped carbon; anodes; honeycomb‐like porous structures; lithium storage
Year: 2018 PMID: 30250811 PMCID: PMC6145217 DOI: 10.1002/advs.201800829
Source DB: PubMed Journal: Adv Sci (Weinh) ISSN: 2198-3844 Impact factor: 16.806
Figure 1Schematic illustration of honeycomb‐like nitrogen/sulfur co‐doped 3D carbon‐coated porous cobalt sulfide.
Figure 2a,b,c) SEM images, d,e) element mapping images (C, Co, S, N), f,g) TEM images, and h,i) the high‐magnification TEM images of CS@PC composite.
Figure 3a) N2 adsorption–desorption isotherm and b) X‐ray diffraction pattern with Rietveld refinement of CS@PC. c) Raman scattering spectra of PC, CS, and CS@PC and d) TG‐DSC curve of CS@PC.
Figure 4a) Typical XPS survey spectrum and the corresponding b) Co 2p, c) S 2p, d) C 1s, e) N 1s, and f) O 1s spectra of the CS@PC.
Figure 5a) The first four successive CV curves of CS@PC and b) the charge–discharge curves of selected cycles for CS@PC at 100 mA g−1. c) The cycling performance of the CS@PC, PC, and CS electrodes at 100 mA g−1 between 0.01 and 3 V. d) The rate performance of CS@PC and PC at different current densities. e) Long cycle test of the CS@PC and PC electrodes at 1000 mA g−1.
Figure 6a) CV curves at different scan rates of the CS@PC electrodes and b) corresponding log(I) versus log(v) plots at specific peak currents. c) Capacitive contribution (red) and diffusion contribution (blue) at 1.0 mV s−1. d) Normalized contribution ration of capacities at different scan rates.
Figure 7a) EIS spectra of CS@PC, CS, and PC electrodes, and the corresponding equivalent circuit (inset of (a)). b) The relationship plot of Z′ versus ω−1/2 at low‐frequency region. c) GITT curves and corresponding Li+ diffusion coefficient at different discharge/charge states of the CS@PC electrode.