Potential-dependent NRR/HER competition and N2 activation mechanism in M1M2@C6N6 bimetallic catalysts
Abstract
The performance decay of the electrochemical nitrogen reduction reaction (eNRR) at negative potentials is a primary obstacle to industrial implementation, which is predominantly attributed to the competition from the hydrogen evolution reaction (HER). In this work, a novel tiered screening strategy is proposed for the first time by integrating the computational hydrogen electrode (CHE) model and grand canonical ensemble constant-potential simulations to systematically investigate the potential-dependent competition of NRR and HER on M1M2@C6N6 Among 55 candidate catalysts, ScMn@C6N6 and VFe@C6N6 possessing high activity and selectivity are screened out, since they maintain a thermodynamic advantage for N2 adsorption over a broad potential window. The equilibrium potential (Ueq ) is defined as a critical benchmark to quantify the transition from N2 -dominant to H-dominant adsorption, which provides a rational explanation for the premature decline in NRR yield before reaching the mass transfer limit.
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