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Electrochemical water splitting is recognized as a practical strategy for impelling the transformation of sustainable energy sources such as solar energy from electricity to clean hydrogen fuel. To actualize the large‐scale hydrogen production, it is paramount to develop low‐cost, earth‐abundant, efficient, and stable electrocatalysts. Among those electrocatalysts, alternative architectural arrays...
In article number 1808367, Jungang Hou, Licheng Sun, and co‐workers report versatile synthetic approaches for nanoarray architectures as typical electrocatalysts. Promising strategies to enhance the electrocatalytic activities of architectural arrays by component manipulation, heterostructure regulation, and defect engineering are highlighted, paving a valuable path for their use in electrocatalytic...
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