Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation

While splitting water into fuel may provide a green, renewable method for energy storage, water oxidation is its bottleneck. Here, authors reported multiferroic electrocatalysts with improved oxygen evolution performances assisted by polarization.

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Autores principales: Xiaoning Li, Huan Liu, Zezhi Chen, Qingmei Wu, Zheyin Yu, Mengmeng Yang, Xiaolin Wang, Zhenxiang Cheng, Zhengping Fu, Yalin Lu
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/2793f605e9e64fc0933cfd64e8f4b6e3
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spelling oai:doaj.org-article:2793f605e9e64fc0933cfd64e8f4b6e32021-12-02T14:35:55ZEnhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation10.1038/s41467-019-09191-02041-1723https://doaj.org/article/2793f605e9e64fc0933cfd64e8f4b6e32019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09191-0https://doaj.org/toc/2041-1723While splitting water into fuel may provide a green, renewable method for energy storage, water oxidation is its bottleneck. Here, authors reported multiferroic electrocatalysts with improved oxygen evolution performances assisted by polarization.Xiaoning LiHuan LiuZezhi ChenQingmei WuZheyin YuMengmeng YangXiaolin WangZhenxiang ChengZhengping FuYalin LuNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-10 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoning Li
Huan Liu
Zezhi Chen
Qingmei Wu
Zheyin Yu
Mengmeng Yang
Xiaolin Wang
Zhenxiang Cheng
Zhengping Fu
Yalin Lu
Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
description While splitting water into fuel may provide a green, renewable method for energy storage, water oxidation is its bottleneck. Here, authors reported multiferroic electrocatalysts with improved oxygen evolution performances assisted by polarization.
format article
author Xiaoning Li
Huan Liu
Zezhi Chen
Qingmei Wu
Zheyin Yu
Mengmeng Yang
Xiaolin Wang
Zhenxiang Cheng
Zhengping Fu
Yalin Lu
author_facet Xiaoning Li
Huan Liu
Zezhi Chen
Qingmei Wu
Zheyin Yu
Mengmeng Yang
Xiaolin Wang
Zhenxiang Cheng
Zhengping Fu
Yalin Lu
author_sort Xiaoning Li
title Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
title_short Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
title_full Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
title_fullStr Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
title_full_unstemmed Enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
title_sort enhancing oxygen evolution efficiency of multiferroic oxides by spintronic and ferroelectric polarization regulation
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/2793f605e9e64fc0933cfd64e8f4b6e3
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AT mengmengyang enhancingoxygenevolutionefficiencyofmultiferroicoxidesbyspintronicandferroelectricpolarizationregulation
AT xiaolinwang enhancingoxygenevolutionefficiencyofmultiferroicoxidesbyspintronicandferroelectricpolarizationregulation
AT zhenxiangcheng enhancingoxygenevolutionefficiencyofmultiferroicoxidesbyspintronicandferroelectricpolarizationregulation
AT zhengpingfu enhancingoxygenevolutionefficiencyofmultiferroicoxidesbyspintronicandferroelectricpolarizationregulation
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