Skip to content

Opening book details…

Can I read Amorphous–crystalline FeNi~2~S~4~@NiFe–LDH nanograsses with molten salt as an industrially promising electrocatalyst for oxygen evolution on EtoBox?

Amorphous–crystalline FeNi~2~S~4~@NiFe–LDH nanograsses with molten salt as an industrially promising electrocatalyst for oxygen evolution by Fu-Li Wang; Xin- Yu Zhang; Jian-Cheng Zhou; Zhuo-Ning Shi; Bin Dong; Jing-Yi Xie; Yi-Wen Dong; Jian-Feng Yu; Yong-Ming Chai is a Materials Science article available to read on EtoBox.

What is Amorphous–crystalline FeNi~2~S~4~@NiFe–LDH nanograsses with molten salt as an industrially promising electrocatalyst for oxygen evolution about?

The hydrolysis of S ion FeNi~2~S~4~ can promote the in-situ formation of ultrathin amorphous NiFe–LDH grown in situ on crystalline FeNi~2~S~4~, which can not only improve activity but also significantly enhance stability for oxygen evolution reaction.

Who reads Amorphous–crystalline FeNi~2~S~4~@NiFe–LDH nanograsses with molten salt as an industrially promising electrocatalyst for oxygen evolution?

It is typically read by researchers, students, and practitioners in Materials Science.

Author
Fu-Li Wang; Xin- Yu Zhang; Jian-Cheng Zhou; Zhuo-Ning Shi; Bin Dong; Jing-Yi Xie; Yi-Wen Dong; Jian-Feng Yu; Yong-Ming Chai
Publisher
Royal Society of Chemistry (RSC)
Published
2022
Language
EN
Field
Materials Science (Physical Sciences)