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The electrochemical oxidation of methanol has emerged as a pivotal process in the development of sustainable energy systems, particularly in the context of direct methanol fuel cell (DMFC) and selective oxidation reactions. This review comprehensively examines the advancements in methanol oxidation, categorizing the processes into complete oxidation (methanol oxidation reaction, MOR) and selective oxidation (methanol selective oxidation reaction, MSOR). MOR facilitates the total conversion of methanol into carbon dioxide and water, while MSOR aims to produce valuable intermediates such as formate, which can enhance energy conversion efficiency and contribute to the synthesis of high-value chemicals. The review highlights the critical role of catalysts in these processes, detailing the progress in designing and optimizing various catalyst classes, including precious metals, transition metal oxides, and non-precious metal-based catalysts. Recent innovations in catalyst design, such as the use of nanostructured materials and hybrid systems, have shown promise in improving reaction rates and selectivity. Despite significant advancements, challenges remain, particularly in achieving high activity, selectivity, and stability under operational conditions. Future research directions are identified, emphasizing the need for scalable catalyst production and integration of methanol oxidation processes into existing energy infrastructures. This review underscores the importance of methanol oxidation in the broader context of energy conversion and storage, paving the way for the development of more efficient and sustainable energy systems.
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http://dx.doi.org/10.1002/cssc.202402767 | DOI Listing |
Scientifica (Cairo)
August 2025
Department of Pharmacy, Jahangirnagar University, Savar, Dhaka, Bangladesh.
As potent therapeutic agents, the pharmacological potentials of natural substances have been the subject of recent research. Around the world, numerous tribes and ethnic communities have long used Linn. (Family: ) to treat variety of illnesses.
View Article and Find Full Text PDFDalton Trans
September 2025
Instituto de Química, Universidad Nacional Autónoma de México, Circuito Interior, CU, Ciudad de México, 04510, Mexico.
Synthesis, characterization, and electrocatalytic water oxidation studies of the cubane-type complexes [(μ-)CoCl(MeOH)] (1) and [(μ-)CoCl(MeOH)] (2) are herein reported. Cubanes 1 and 2 were obtained in high yields under mild conditions by self-assembly of the ligands = 1--2-benzimidazolylmethanol and = 1-methyl-2-benzimidazolylmethanol with CoCl·6HO in basic methanolic solution. Both compounds feature a cubane-type structure in which the central {CoO} units are built by four Co centers coordinated by alkoxide-bridged oxygen and nitrogen atoms from the deprotonated ligands and stabilized by MeOH molecules and chloride ions.
View Article and Find Full Text PDFJ Hazard Mater
September 2025
Department of Environmental & Sustainable Engineering, University at Albany, State University of New York, Albany, NY 12222, United States. Electronic address:
This study examined the behavior of six U.S. Environmental Protection Agency (EPA) regulated per- and polyfluoroalkyl substances (PFAS) compounds in vegetated soils amended with Class A and Class B biosolids.
View Article and Find Full Text PDFAnal Chim Acta
November 2025
Chemical and Veterinary Investigations Office Stuttgart, Schaflandstraße 3/2, 70736, Fellbach, Germany.
Background: Previous studies involving cleanup via conventional solid-phase extraction (SPE) materials to overcome matrix effects for the polar organophosphonate and -phosphinate pesticides glyphosate, glufosinate, ethephon, fosetyl, and their various metabolites often showed limitations due to the existence of various matrix compounds in plant commodities with similar polarity. To overcome existing drawbacks, we utilized the unique selectivity provided by metal oxides as SPE materials. These were exploited in a novel automated online SPE-LC-MS/MS method which allowed analyte-specific trapping in the presence of excessive amounts of matrix compounds as typically contained in extracts of the Quick Polar Pesticides (QuPPe) method.
View Article and Find Full Text PDFChemistry
September 2025
IISER Tirupati: Indian Institute of Science Education and Research Tirupati, Tirupati, 517619, INDIA.
Nitric oxide (NO) is one of the crucial biological signaling molecules, yet achieving its selective and spatiotemporal detection in in-situ/invitro or biological systems at specific pH remains a significant challenge. Hence, a probe capable of directly detecting NO would be immensely valuable in understanding its reactivity and biological functions. Here, to develop a Cu(II)-based probe for selective NO detection, we synthesized a Cu(II)-complex (1) using a N3-tridentate ligand having a pendant dansyl fluorophore (L) and evaluated it's NO reactivity under varying pH conditions.
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