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Being an efficient approach to the utilization of hydrogen energy, the hydrogen oxidation reaction (HOR) is of particular significance in the current carbon-neutrality time. Yet the mechanistic picture of the HOR is still blurred, mostly because the elemental steps of this reaction are rapid and highly entangled, especially when deviating from the thermodynamic equilibrium state. Here we report a strategy for decoding the HOR mechanism under operando conditions. In addition to the wide-potential-range I-V curves obtained using gas diffusion electrodes, we have applied the AC impedance spectroscopy to provide independent and complementary kinetic information. Combining multidimensional data sources has enabled us to fit, in mathematical rigor, the core kinetic parameter set in a 5-D data space. The reaction rate of the three elemental steps (Tafel, Heyrovsky, and Volmer reactions), as a function of the overpotential, can thus be distilled individually. Such an undocumented kinetic picture unravels, in detail, how the HOR is controlled by the elemental steps on polarization. For instance, at low polarization region, the Heyrovsky reaction is relatively slow and can be ignored; but at high polarization region, the Heyrovsky reaction will surpass the Tafel reaction. Additionally, the Volmer reaction has been the fastest within overpotentials of interest. Our findings not only offer a better understanding of the HOR mechanism, but also lay the foundation for the development of improved hydrogen energy utilization systems.
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http://dx.doi.org/10.1002/anie.202318389 | DOI Listing |
Luminescence
August 2025
Department of Chemistry, Josip Juraj Strossmayer University of Osijek, Osijek, Croatia.
This work implies the preparation, structural and fluorescent characterization, and application of the 1,8-naphthalimide-based fluorescent probe for HS detection in human blood serum. The mechanism of fluorescent detection of HS is based on the reduction of the azide group, as the chemical reactive site, in the fluorescent probe structure, to the amino group. Compound 2 possesses another important structural motif, ethanolamine moiety, which modulates physicochemical properties.
View Article and Find Full Text PDFArchaeol Anthropol Sci
August 2025
Department of Paleontology, University of Zurich, Karl-Schmid-Strasse 4, 8006 Zurich, Switzerland.
Unlabelled: The El Jobo projectile points represent a distinctive design innovation of Late Pleistocene Neotropical human groups. This technology, characterized by its fusiform/lanceolate shape, has been recorded mainly in northwestern Venezuela in a variety of geographical areas and in association with megafauna killing/butchering sites. To characterize it, address its significance, and analyse possible continental relationships, four consecutive approaches were conducted.
View Article and Find Full Text PDFAnal Chem
August 2025
Wuhan National Laboratory for Optoelectronics (WNLO), Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.
Surface water, a critical global freshwater resource, faces severe heavy metal contamination threatening ecosystems and human health. Traditional detection methods like ICP-MS are time-consuming and expensive due to complex sample preparation, which is not practical for on-site monitoring. While laser-induced breakdown spectroscopy (LIBS) enables rapid and in situ elemental analysis, its quantitative efficiency in on-site monitoring remains limited by the laborious manual gradient-preparing procedures.
View Article and Find Full Text PDFMikrochim Acta
July 2025
School of Chemistry and ARC Center of Excellence in Exciton Science, University of Melbourne, Parkville, VIC, 3010, Australia.
A novel bottom-up green approach is presented for synthesizing blue fluorescent sulfur quantum dots (SQDs) utilizing L-cysteine as the sulphur source and the unique structure of carboxymethyl cellulose macromolecule as the passivating agent. The method accomplishes synthesis within a shortened reaction time of only 4 h. The formation of SQDs involves three steps: heating of L-cysteine to produce HS, which then reacts with HO to form elemental sulphur, eventually assembling into SQDs.
View Article and Find Full Text PDFJ Contam Hydrol
September 2025
Aix Marseille Univ, LCE, Marseille, France. Electronic address:
Trimethylbenzene (TMB) isomers (1,2,3-TMB, 1,2,4-TMB, 1,3,5-TMB) are used as conservative tracers of alkylbenzenes in contaminated aquifers, but their resistance to anaerobic biodegradation remains uncertain. In this study, TMB degradation was investigated using enrichment cultures in microcosms under denitrifying, iron-, manganese- and sulfate-reducing conditions. Evidence for TMB biodegradation was gathered using concentration measurements, metabolites identification and multi-elemental compound specific isotope analysis (ME-CSIA).
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