Hydrogen is widely considered to be a sustainable and clean energy alternative to the use of fossil fuels in the future. Its high hydrogen content, nontoxicity, and liquid state at room temperature make formic acid a promising hydrogen carrier. Designing highly efficient and low-cost heterogeneous catalysts is a major challenge for realizing the practical application of formic acid in the fuel-cell-based hydrogen economy. Herein, a simple but effective and rapid strategy is proposed, which demonstrates the synthesis of NiPd bimetallic ultrafine particles (UPs) supported on NH -functionalized and N-doped reduced graphene oxide (NH -N-rGO) at room temperature. The introduction of the NH N group to rGO is the key reason for the formation of the ultrafine and well-dispersed Ni Pd UPs (1.8 nm) with relatively large surface area and more active sites. Surprisingly, the as-prepared low-cost NiPd/NH -N-rGO dsiplays excellent hydrophilicity, 100% H selectivity, 100% conversion, and remarkable catalytic activity (up to 954.3 mol H (mol catalyst) h ) for FA decomposition at room temperature even with no additive, which is much higher than that of the best catalysts so far reported.
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http://dx.doi.org/10.1002/adma.201703038 | DOI Listing |
J Biosci Bioeng
December 2024
Division of Engineering and Agriculture, Graduate School of Regional Development and Creativity, Utsunomiya University, 7-1-2 Yoto, Utsunomiya, Tochigi 321-8585, Japan.
Bacteria and fungi that are resistant to formaldehyde (FA) are expected to use biochemical processing to degrade FA in wastewater. Pseudomonas sp. No.
View Article and Find Full Text PDFMed J Armed Forces India
December 2024
Associate Professor (Forensic Medicine), Agartala Government Medical College, Tripura, India.
Background: Rubber latex processing acid poisoning is a frequently encountered phenomenon in Tripura. Formic acid is the preferred choice for coagulating rubber latex in rubber sheet manufacturing units. The objective of this study aimed to assess the epidemiological profile of poisoning deaths by rubber processing acid and to record their autopsy findings.
View Article and Find Full Text PDFJ Am Chem Soc
December 2024
School of Chemical Engineering, The University of Queensland, St Lucia, QLD 4072, Australia.
The development of efficient artificial photosynthesis systems is crucial for sustainable chemical production, as they mimic natural processes to convert solar energy into chemical products, thereby addressing both energy and environmental challenges. The main bottlenecks in current research include fabricating highly selective, stable, and scalable catalysts, as well as effectively harnessing the full spectrum of light, particularly the low-energy, long-wavelength portion. Herein, we report a novel composite photocatalyst system based on lead halide perovskites embedded in functionalized MOF glass.
View Article and Find Full Text PDFEnviron Sci Technol
December 2024
State Ecology and Environment Scientific Observation and Research Station for the Yangtze River Delta at Dianshan Lake, Shanghai Environmental Monitoring Center, Shanghai 200030, China.
Biomass burning is an important source of brown carbon (BrC) aerosols, which influence climate by affecting the Earth's radiative balance. However, the transformation pathways of BrC chromophores, especially in the presence of photochemically active species, such as nitrate, are not well understood. In this study, the nitrate-mediated aqueous-phase photooxidation of three typical BrC chromophores from biomass burning was investigated, including 4-nitrocatechol, 3-nitrosalicylic acid, and 3,4-dinitrophenol.
View Article and Find Full Text PDFNanomaterials (Basel)
December 2024
Centre of New Technologies, University of Warsaw, S. Banacha 2c, 02-097 Warsaw, Poland.
WO/Ag/TiO composite photoelectrodes were formed via the high-temperature calcination of a WO film, followed by the sputtering of a very thin silver film and deposition of an overlayer of commercial TiO nanoparticles. These synthetic photoanodes were characterized in view of the oxidation of a model organic compound glucose combined with the generation of hydrogen at a platinum cathode. During prolonged photoelectrolysis under simulated solar light, these photoanodes demonstrated high and stable photocurrents of ca.
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