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A Prussian blue route to nitrogen-doped graphene aerogels as efficient electrocatalysts for oxygen reduction with enhanced active site accessibility 被引量:1
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作者 Yayuan Liu Haotian Wang +4 位作者 Dingchang Lin Jie Zhao Chong Liu Jin Xie Yi Cui 《Nano Research》 SCIE EI CAS CSCD 2017年第4期1213-1222,共10页
为氧减小反应(ORR ) 开发高效的 nonprecious 金属 electrocatalysts 为许多可更新的精力变换和存储系统是关键的。近那结束,导致高度活跃的催化中心和提高的活跃地点可接近性的合理催化剂设计原则无疑具有首要的重要性。这里,我们使... 为氧减小反应(ORR ) 开发高效的 nonprecious 金属 electrocatalysts 为许多可更新的精力变换和存储系统是关键的。近那结束,导致高度活跃的催化中心和提高的活跃地点可接近性的合理催化剂设计原则无疑具有首要的重要性。这里,我们使用了普鲁士的蓝 nanoparticles 到锚 Fe/Fe <sub>3</sub > C 种类到做氮的减少的 graphene 氧化物 aerogels 作为 ORR 催化剂。在 nanosized Fe <sub>3</sub 之间的强壮的相互作用 > C 和 graphitic 碳壳在 ORR 导致了 synergistic 效果,并且碳壳的保护保证了催化剂的稳定性。作为结果, aerogel electrocatalyst 在在碱的媒介,在酸的媒介的好表演,和匹敌 ORR electrocatalysts 迄今为止报导了的最好的 nonprecious 金属的优秀稳定性和转线路忍耐装载的一样的团与最先进的 Pt/C 催化剂同样在 ORR 显示了突出的活动。 展开更多
关键词 氧减小反应 普鲁士的蓝 nanoparticles 减少的 graphene 氧化物 aerogel 做的氮
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A nanoporous nitrogen-doped graphene for high performance lithium sulfur batteries
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作者 Shuang-Ke Liu Xiao-Bin Hong +3 位作者 Yu-Jie Li Jing Xu Chun-Man Zheng Kai Xie 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第2期412-416,共5页
A nanoporous N-doped reduced graphene oxide(p-N-rGO) was prepared through carbothermal reaction between graphene oxide and ammonium-containing oxometalates as sulfur host for Li-S batteries.The p-N-rGO sheets have abu... A nanoporous N-doped reduced graphene oxide(p-N-rGO) was prepared through carbothermal reaction between graphene oxide and ammonium-containing oxometalates as sulfur host for Li-S batteries.The p-N-rGO sheets have abundant nanopores with diameters of 10-40 nm and the nitrogen content is 2.65 at%.When used as sulfur cathode,the obtained p-N-rGO/S composite has a high reversible capacity of 1110mAhg^1 at 1C rate and stable cycling performance with 781.8 mAhg^1 retained after 110 cycles,much better than those of the rGO/S composite.The enhanced electrochemical performance is ascribed to the rational combination of nanopores and N-doping,which provide efficient contact and wetting with the electrolyte,accommodate volume expansion and immobilize polysulfides during cycling. 展开更多
关键词 锂硫电池 硫阴极 多孔的 graphene 做的氮 高效
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