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The In Situ Assembly of an Equipotential Cathode for Nitrite Enrichment Enabling Electrochemical Nitrate Reduction to
Chenyu Bao1, Zhiwen Cheng2, Dongting Yue3
1School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai 200240, P. R. China.
Abstract:
Electrocatalytically reducing NO3- to N2 is of great significance for environmental remediation and global nitrogen cycling. However, it is currently hindered by low N2 selectivity since adsorbate N-intermediates are hard to migrate and couple each other during the N-N coupling step. Herein, an in situ assembly strategy was taken to attach Pd@Cu2O nanoparticles with CuO nanowire arrays to form an equipotential cathode CuO-Pd@Cu2O, which optimized N2 selectivity to 91%, much higher than that of directly loaded Pd-Cu cathode (55%). Theoretical calculations combined with in situ spectroscopies demonstrated that the equipotential cathode can shield the electric field and enrich NO2- intermediate inside. Meanwhile, a unique reaction pathway was revealed that the enriched NO2- can directly couple with *N and also tune the Pd d-band center, avoiding the hurdles in N-N coupling. The approach here provides a new perspective in cathode design and a mechanistic understanding for the N-N coupling reaction.
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