Chemical Engineering Journal, Journal Year: 2025, Volume and Issue: unknown, P. 159828 - 159828
Published: Jan. 1, 2025
Language: Английский
Chemical Engineering Journal, Journal Year: 2025, Volume and Issue: unknown, P. 159828 - 159828
Published: Jan. 1, 2025
Language: Английский
Chemical Reviews, Journal Year: 2023, Volume and Issue: 123(22), P. 12507 - 12593
Published: Nov. 1, 2023
Electrocatalysis underpins the renewable electrochemical conversions for sustainability, which further replies on metallic nanocrystals as vital electrocatalysts. Intermetallic have been known to show distinct properties compared their disordered counterparts, and long explored functional improvements. Tremendous progresses made in past few years, with notable trend of more precise engineering down an atomic level investigation transferring into practical membrane electrode assembly (MEA), motivates this timely review. After addressing basic thermodynamic kinetic fundamentals, we discuss classic latest synthetic strategies that enable not only formation intermetallic phase but also rational control other catalysis-determinant structural parameters, such size morphology. We demonstrate emerging nanomaterials potentially advancement energy electrocatalysis. Then, state-of-the-art characterizations representative electrocatalysts emphasis oxygen reduction reaction evaluated a MEA setup. summarize review by laying out existing challenges offering perspective future research directions toward practicing conversions.
Language: Английский
Citations
91Coordination Chemistry Reviews, Journal Year: 2024, Volume and Issue: 514, P. 215900 - 215900
Published: May 8, 2024
Catalysis stands as a cornerstone in chemical synthesis, pivotal advancing sustainable manufacturing pathways. The evolution from energy-intensive to catalytic processes has marked transformative shift, notably exemplified by low-energy methods. These processes, operating under milder conditions and emphasizing selectivity recyclability, represent the forefront of chemistry. This review navigates through an array reactions, highlighting their diverse applications culminating exploration recent strides within processes. For example, explores uses such enzyme mimicking, biodiesel production, carbon dioxide capture, organic synthesis. Additionally, it covers enzymatic catalysis photocatalysis for transformations, energy applications, water treatment. Notably, emphasizes capabilities single-atom (SAC) diatomic catalysts (DACs), recognizing exceptional performance catalyzing reactions at minimal activation energies while maintaining high efficiency mild conditions. By elucidating modulation electronic structure offering microelectronic perspective, aims elucidate mechanisms underlying activity SAC DACs. Emphasizing interplay between coordination chemistry principles efficacy, elucidates indispensable role complexes fortifying sustainability these spotlighting fusion with catalysis, this underscore collective influence shaping landscape production.
Language: Английский
Citations
83Small, Journal Year: 2024, Volume and Issue: unknown
Published: March 7, 2024
Electrochemical synthesis of H
Language: Английский
Citations
51Advanced Materials, Journal Year: 2024, Volume and Issue: 36(24)
Published: March 5, 2024
Hydrogen peroxide (H
Language: Английский
Citations
27Chemical Society Reviews, Journal Year: 2024, Volume and Issue: 53(16), P. 8137 - 8181
Published: Jan. 1, 2024
Hydrogen peroxide (H
Language: Английский
Citations
18Journal of Material Science and Technology, Journal Year: 2025, Volume and Issue: unknown
Published: Jan. 1, 2025
Language: Английский
Citations
3Nano-Micro Letters, Journal Year: 2023, Volume and Issue: 16(1)
Published: Nov. 20, 2023
This comprehensive review provides a deep exploration of the unique roles single atom catalysts (SACs) in photocatalytic hydrogen peroxide (H
Language: Английский
Citations
41Applied Catalysis B Environment and Energy, Journal Year: 2023, Volume and Issue: 343, P. 123467 - 123467
Published: Nov. 4, 2023
On-site H2O2 electrosynthesis via two-electron oxygen reduction reaction (ORR) is attracting great interest for water treatment. The use of carbon black-based gas-diffusion electrodes (GDEs) especially appealing, but their activity, selectivity and long-term stability must be improved. Here, a facile GDEs modification strategy using trace polymethylhydrosiloxane (PMHS) allowed outstanding production, outperforming the conventional polytetrafluoroethylene (PTFE)-GDE (1874.8 vs 1087.4 mg L-1 at 360 min). superhydrophobicity conferred by PMHS endowed catalytic layer with high faradaic efficiencies (76.2%-89.7%) during operation 60 h. electrochemical tests confirmed activity PMHS-modified GDE. Moreover, efficient degradation several micropollutants electro-Fenton process demonstrated potential new An in-depth understanding roles functional groups provided from DFT calculations: −CH3 contribute to form superhydrophobic interface, whereas Si-H as-formed Si-O-C sites modulate coordination environment active centers.
Language: Английский
Citations
26ACS Catalysis, Journal Year: 2024, Volume and Issue: 14(14), P. 10893 - 10903
Published: July 4, 2024
Language: Английский
Citations
14Journal of Energy Chemistry, Journal Year: 2024, Volume and Issue: 99, P. 335 - 364
Published: Aug. 3, 2024
Language: Английский
Citations
12