Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: unknown, P. 158995 - 158995
Published: Dec. 1, 2024
Language: Английский
Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: unknown, P. 158995 - 158995
Published: Dec. 1, 2024
Language: Английский
Applied Catalysis A General, Journal Year: 2024, Volume and Issue: unknown, P. 119990 - 119990
Published: Oct. 1, 2024
Language: Английский
Citations
3Advanced Sustainable Systems, Journal Year: 2024, Volume and Issue: unknown
Published: Oct. 2, 2024
Abstract Electrocatalytic nitrate (NO 3 − )/nitrite 2 ) reduction of ammonia (NH provides energy‐saving and sustainable methods for NH synthesis. However, both reactions involve multiple electrons protons, making the reaction process complex with many by‐products. Thus, efficient catalysts are needed to improve selectivity yield ammonia. Herein, CuCo nanoparticles decorated N‐doped carbon (CuCo‐NC) derived from zeolitic imidazolate framework (ZIF) a cross‐shaped leaf structure has been synthesized as electrocatalysts NO / reduction. The obtained CuCo‐NC possesses Cu‐doped Co metallic nanoparticles, hierarchical structure, demonstrated exhibit good activity in electrocatalytic /NO In , Faraday efficiency reached 97% 7.17 mg h −1 cm −2 at −0.3 V. 92% 8.34 V, demonstrating stability cyclic electrolysis reactions. exhibits excellent therefore highlights promising potential bimetallic
Language: Английский
Citations
1CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION), Journal Year: 2024, Volume and Issue: 66, P. 110 - 138
Published: Nov. 1, 2024
Language: Английский
Citations
1Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 503, P. 158536 - 158536
Published: Dec. 11, 2024
Language: Английский
Citations
1Journal of Energy Chemistry, Journal Year: 2024, Volume and Issue: unknown
Published: Dec. 1, 2024
Language: Английский
Citations
1ChemSusChem, Journal Year: 2024, Volume and Issue: unknown
Published: Sept. 30, 2024
Abstract As the global energy structure evolves and clean technologies advance, electrocatalysis has become a focal point as critical conversion pathway in new sector. Transitional metal electrocatalysts (TMEs) with their distinctive electronic structures redox properties show great potential electrocatalytic reactions. However, complex reaction mechanisms kinetic limitations hinder improvement of efficiency, highlighting necessity for comprehensive studies on performance electrocatalysts. X‐ray Absorption Fine Structure (XAFS) spectra stand out robust tool examining electrocatalyst′s due to its atomic selectivity sensitivity local environments. This review delves into application XAFS technology characterizing TMEs, providing in‐depth analyses Near‐Edge (XANES) spectra, Extended (EXAFS) both R‐space k ‐space. These reveal intrinsic structural information, interactions, catalyst stability, aggregation morphology. Furthermore, paper examines advancements in‐situ techniques real‐time monitoring active site changes, capturing intermediate transitional states, elucidating evolution species during insights deepen our understanding structure‐activity relationship offer valuable guidance designing developing highly stable
Language: Английский
Citations
0Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: unknown, P. 158995 - 158995
Published: Dec. 1, 2024
Language: Английский
Citations
0