期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
硫氰酸钠溶剂中铁离子脱除工艺的技术改进 被引量:1
1
作者 许莹 陈曙光 《石化技术与应用》 CAS 2003年第5期359-360,共2页
对脱除硫氰酸钠溶剂中铁离子的机理作了讨论,认为硫氰酸钠浓溶液中的铁离子只以Fe2+的形式存在,并得到验证。根据这一理论对硫氰酸钠一步法腈纶装置的除铁工艺进行改进后,装置的物料消耗量显著减少。
关键词 腈纶 硫氰酸钠一步法 除铁
下载PDF
The bond evolution mechanism of covalent sulfurized carbon during electrochemical sodium storage process 被引量:4
2
作者 Tianjing Wu Chenyang Zhang +5 位作者 Guoqiang Zou Jiugang Hu Limin Zhu Xiaoyu Cao Hongshuai Hou Xiaobo Ji 《Science China Materials》 SCIE EI CSCD 2019年第8期1127-1138,共12页
The excellent energy storage performance of covalent sulfur-carbon material has gradually attracted great interest. However, in the electrochemical sodium storage process, the bond evolution mechanism remains an elusi... The excellent energy storage performance of covalent sulfur-carbon material has gradually attracted great interest. However, in the electrochemical sodium storage process, the bond evolution mechanism remains an elusive topic. Herein, we develop a one-step annealing strategy to achieve a high covalent sulfur-carbon bridged hybrid(HCSC)utilizing phenylphosphinic acid as the carbon-source/catalyst and sodium sulfate as the sulfur-precursor/salt template, in which the sulfur mainly exists in the forms of C–S–C and C–S–S–C. Notably, most of the bridge bonds are electrochemically cleaved when the cycling voltage is lower than0.6 V versus Na/Na+, leading to the appearance of two visible redox peaks in the following cyclic voltammogram(CV) tests.The in-situ and ex-situ characterizations demonstrate that S^2- is formed in the reduction process and the carbon skeleton is concomitantly and irreversibly isomerized. Thus, the cleaved sulfur and isomerized carbon could jointly contribute to the sodium storage in 0.01–3.0 V. In a Na-S battery system, the activated HCSC in cut off voltage window of 0.6–2.8 V achieves a high reversible capacity(770 mA h g^-1 at 300 mA g^-1). This insight reveals the charge storage mechanism of sulfur-carbon bridged hybrid and provides an improved enlightenment on the interfacial chemistry of electrode materials. 展开更多
关键词 one-step method sulfur-carbon bridged complex electrochemical mechanism sodium storage
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部