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Clean Energy
In article number 2200173, Yunyong Li and co‐workers develop a cation‐doping and oxygen‐vacancy engineering strategy to fabricate Ru/Rh‐doped FeOOH nanoarrays with abundant oxygen‐vacancies on Ti3C2Tx MXene (Ru/Rh‐FeOOH@Ti3C2Tx). Because of the hand‐in‐hand effect of Ru/Rh‐cation doping and oxygen vacancies, the two Ru/Rh‐FeOOH@Ti3C2Tx electrocatalysts both produce abundant green and...
Oxyhydroxides hold promise as highly‐efficient non‐noble electrocatalysts for the oxygen evolution reaction (OER), but their poor conductivity and structural instability greatly impede their progress. Herein, the authors develop a cation‐doping and oxygenvacancy engineering strategy to fabricate Ru/Rh‐doped FeOOH nanoarrays with abundant oxygen‐vacancies in situ grown on Ti3C2Tx MXene (Ru/Rh‐FeOOH@Ti...
Constructing cost‐efficient and robust bifunctional electrocatalysts for both neutral and alkaline water splitting is highly desired, but still affords a great challenge, due to sluggish hydrogen/oxygen evolution reaction (HER/OER) kinetics. Herein, an in situ integration engineering strategy of oxygen‐vacancy and core–shell heterojunction to fabricate an anemone‐like CoP@CoOOH core–shell heterojunction...
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