当前位置:
X-MOL 学术
›
Adv. Energy Mater.
›
论文详情
Our official English website, www.x-mol.net, welcomes your
feedback! (Note: you will need to create a separate account there.)
Oxygen Evolution: Fe?N4 Sites Embedded into Carbon Nanofiber Integrated with Electrochemically Exfoliated Graphene for Oxygen Evolution in Acidic Medium (Adv. Energy Mater. 26/2018)
Advanced Energy Materials ( IF 24.4 ) Pub Date : 2018-09-14 , DOI: 10.1002/aenm.201870119 Chaojun Lei 1 , Hengquan Chen 2 , Junhui Cao 1 , Jian Yang 1 , Ming Qiu 3 , Ying Xia 3 , Chris Yuan 4 , Bin Yang 1 , Zhongjian Li 1 , Xingwang Zhang 1 , Lecheng Lei 1 , Janel Abbott 5 , Yu Zhong 6 , Xinhui Xia 6 , Gang Wu 5 , Qinggang He 2 , Yang Hou 1
Advanced Energy Materials ( IF 24.4 ) Pub Date : 2018-09-14 , DOI: 10.1002/aenm.201870119 Chaojun Lei 1 , Hengquan Chen 2 , Junhui Cao 1 , Jian Yang 1 , Ming Qiu 3 , Ying Xia 3 , Chris Yuan 4 , Bin Yang 1 , Zhongjian Li 1 , Xingwang Zhang 1 , Lecheng Lei 1 , Janel Abbott 5 , Yu Zhong 6 , Xinhui Xia 6 , Gang Wu 5 , Qinggang He 2 , Yang Hou 1
Affiliation
In article number 1801912, Ming Qiu, Gang Wu, Qinggang He, Yang Hou, and co‐workers report the synthesis of atomically dispersed iron‐nitrogen coordinated carbon fiber grown on electrochemically exfoliated graphene, which demonstrates excellent electrocatalytic oxidation evolution from water splitting in acid. The outstanding performance is attributed to the highly active sites of the Fe‐N4 species.
中文翻译:
氧气逸出:Fe ?嵌入碳纳米纤维的N4部位与电化学剥离的石墨烯集成在一起,可在酸性介质中释放氧气(Adv。Energy Mater。26/2018)
邱明,吴刚,何庆刚,侯厚和同事在文章1801912中报道了在电化学剥离的石墨烯上生长的原子分散的铁氮配位碳纤维的合成方法,这证明了酸在水中分解产生的出色的电催化氧化演化。出色的性能归因于Fe‐N 4物种的高活性位点。
更新日期:2018-09-14
中文翻译:
氧气逸出:Fe ?嵌入碳纳米纤维的N4部位与电化学剥离的石墨烯集成在一起,可在酸性介质中释放氧气(Adv。Energy Mater。26/2018)
邱明,吴刚,何庆刚,侯厚和同事在文章1801912中报道了在电化学剥离的石墨烯上生长的原子分散的铁氮配位碳纤维的合成方法,这证明了酸在水中分解产生的出色的电催化氧化演化。出色的性能归因于Fe‐N 4物种的高活性位点。