Electrodeposited Ni‐Mo‐P nanoparticles on TiO2 nanoribbon array for electrocatalytic ammonia synthesis by reducing nitrite

Author:

Ren Zhaofei,Chen Qiuyue,Zhang Jing,An Xuguang,Liu Qian,Xie LisiORCID,Yao Weitang,Sun Xuping,Kong QingquanORCID

Publisher

Elsevier BV

Subject

Physics and Astronomy (miscellaneous),Energy (miscellaneous),General Materials Science

Reference55 articles.

1. High-efficiency electrocatalytic NO reduction to NH3 by nanoporous VN;Qi;Nano Res. Energy,2022

2. Recent advances in nanostructured heterogeneous catalysts for N-cycle electrocatalysis;Liang;Nano Res. Energ,2022

3. Flower-like open-structured polycrystalline copper with synergistic multi-crystal plane for efficient electrocatalytic reduction of nitrate to ammonia;Yz;Nano Energy,2022

4. Construction of CoP/TiO2 nanoarray for enhanced electrochemical nitrate reduction to ammonia;Deng;Mater. Today Phys.,2022

5. The haber-bosch process revisited: on the real structure and stability of "ammonia iron" under working conditions;Kandemir;Angew. Chem.,2013

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