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1. A leaf-like porous N-doped carbon structure embedded with CoS2 nanoparticles self-supported on carbon fiber paper as a cathode in flexible zinc–air batteries.

2. Construction of NiCo2S4−xPx nanowire arrays for efficient hydrogen evolution reactions in both acidic and alkaline media.

3. Engineering heterostructured Mo2C/MoS2 catalyst with hydrophilicity/aerophobicity via carbothermal shock for efficient alkaline hydrogen evolution.

4. Local environment-mediated efficient electrocatalysis of CO2 to CO on Zn nanosheets.

5. Amazing enhancement of OER performances: creating a well-designed functional Ni and N-doped carbon layer as a support material for fabricating a NiFe-LDH electrocatalyst.

6. Hierarchical Ni–Mo–P nanoarrays toward efficient urea oxidation reaction.

7. Nucleation and growth mechanism of dendrite-free Ni–Cu catalysts by magneto-electrodeposition for the hydrogen evolution reaction.

8. Cathode enabled high faradaic efficiency: reduction of imines to amines with H2O as a H-source.

9. Ru doped molybdenum-based nanowire arrays for efficient hydrogen evolution over a broad pH range.

10. A polyaniline-modified electrode surface for boosting the electrocatalysis towards the hydrogen evolution reaction and ethanol oxidation reaction.

11. Multifunctional book-like CuCo-MOF for highly sensitive glucose detection and electrocatalytic oxygen evolution.