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Co-Based Dual-Metal Phosphides on P-Activated Nickel Foam for Enhanced Hydrogen Generation from Ammonia Borane
Sehrish Mehdi1, Shuling Liu1, Yanyan Liu1,2,3
1College of Chemistry, Zhengzhou University, 100 Science Road, Zhengzhou, 450001, P. R. China.
Abstract:
Cobalt-based monolithic phosphides are an attractive approach due to their stability and corrosion resistance properties for catalytic reactions. Herein, phosphourous -induced Co-based dual active sites phosphides (Co2P-Ni2P-NC) are fabricated on phosphourous-activated nickel foam (P-NF) through the phosphorization method. The results confirm the uniform growth of Co2P-Ni2P nanoparticles (NPs) with octahedral morphology embedded in the carbon-nitrogen matrix. Co2P-Ni2P NPs (9.26 nm) express prominent interfacial interaction and a strong electronic modulation through phosphorous (P) inducing. Thus, the dual active sites (Co2P, Ni2P) synergistically increase the catalytic activity of the optimized catalyst Co2P-Ni2P-NC with excellent efficiency for ammonia borane hydrolysis with hydrogen evolution (rB = 4495 mL min-1 g-1 Co), turnover frequency (TOF = 1214.4 h-1), and apparent activation energy (Ea = 36.17 kJ mol-1). The P-activated nickel foam in Co2P-Ni2P-NC contributes significantly to increasing the catalytic activity of the as-prepared catalysts. Thus, this work provides a rational design for developing a monolithic catalyst for industrial applications in the field of heterogeneous catalysis and sustainable energy.
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