当前位置: X-MOL 学术ChemElectroChem › 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.)
Cover Feature: Polypyrrole‐Assisted Co3O4 Anchored Carbon Fiber as a Binder‐Free Electrode for Seawater Batteries (ChemElectroChem 1/2019)
ChemElectroChem ( IF 3.5 ) Pub Date : 2018-12-05 , DOI: 10.1002/celc.201801708
Changmin Kim 1 , Seona Kim 1 , Ohhun Kwon 1 , Jeongwon Kim 1 , Guntae Kim 1
Affiliation  

The Cover Feature illustrates the morphology of the binder‐free electrode (bf‐PPy+Co3O4@CF) and its reactions in seawater. The binder‐free (bf) air electrode is structured with Co oxide (Co3O4) anchored on carbon fiber (CF) tissues with the assistance of polypyrrole‐doped carbon (PPy/C) by using a simple infiltration technique. The bf‐PPy+Co3O4@CF electrode exhibits excellent bifunctional stability for seawater batteries, presenting a comparable performance to the binder‐included Pt/C+IrO2 electrode. More information can be found in the Article by G. Kim and co‐workers on page 136 in Issue 1, 2019 (DOI: 10.1002/celc.201801219).
image


中文翻译:

封面功能:聚吡咯辅助的Co3O4锚定碳纤维作为用于海水电池的无粘结剂电极(ChemElectroChem 1/2019)

覆盖特征说明了无粘合剂电极(bf-PPy + Co 3 O 4 @CF)的形态及其在海水中的反应。无粘结剂(bf)空气电极是通过使用简单的渗透技术,借助掺有聚吡咯的碳(PPy / C)将锚固在金属碳纤维(CF)上的氧化钴(Co 3 O 4)构成的。bf-PPy + Co 3 O 4 @CF电极对海水电池具有出色的双功能稳定性,与含粘合剂的Pt / C + IrO 2电极具有可比的性能。有关更多信息,请参见G.Kim及其同事在2019年第1期的第136页上的文章。 (DOI:10.1002 / celc.201801219)。
图像
更新日期:2018-12-05
down
wechat
bug