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The direct electrochemical coupling of CO and nitrate (NO) offers a sustainable alternative to the energy-intensive Bosch-Meiser process for urea synthesis. However, achieving efficient C-N coupling at single active sites remains challenging due to the kinetic mismatch between CO and NO reduction, as well as the intricate multistep proton-coupled electron transfer process. Here, we present a sacrificial template-based strategy to synthesize a two-dimensional (2D)/zero-dimensional (0D) FePS/AgS heterostructure catalyst, enabling the tandem coreduction of CO and nitrate for urea electrosynthesis. Electrochemical studies, measurements, and theoretical calculations together demonstrate that the heterostructures with strongly coupled interfaces not only modulate the electronic structure but also enable decoupled control over NO and CO reduction. FePS offers a moderate conversion rate from NO to ammonia, generating *NH intermediates while mitigating overhydrogenation to ammonia. Meanwhile, AgS with optimized loading facilitates efficient conversion of CO to CO, enabling the diffusion and electrophilic attack of CO on *NH, thereby forming the critical *CONH intermediate for urea production. As a result, the FePS/AgS tandem catalyst achieves a high urea yield rate of 1160.9 μg h mg with a Faradaic efficiency (FE) of 15.4% at -0.7 vs reversible hydrogen electrode, outperforming the individual FePS nanosheets and AgS nanoparticles. This study provides key insights into the rational design of heterostructure catalysts that exhibit strong interfacial interactions and allow for decoupled control over parallel reactions to enhance complex coupling processes.
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http://dx.doi.org/10.1021/acsnano.5c09017 | DOI Listing |
JAACAP Open
September 2025
Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio.
Objective: Despite rapid advancements in understanding of cognitive disengagement syndrome (CDS) in children, less is known about the neural correlates of CDS. The aim of this study was to examine associations between CDS symptom severity and connectivity within and between specific brain networks.
Method: The study recruited 65 right-handed children (ages 8-13 years; 36 boys) with the full continuum of CDS symptom severity from the community.
eNeuro
September 2025
Institute for Behavioral Medicine Research, The Ohio State University, Columbus, OH, 43210.
Cancer patients experience circadian rhythm disruptions during and after chemotherapy that can contribute to debilitating side effects. It is unknown how chemotherapy mediates circadian disruptions, and specifically the extent to which these disruptions occur at the level of the principal clock, the suprachiasmatic nuclei (SCN) of the hypothalamus. In the present study, we assessed how the commonly used chemotherapeutic, paclitaxel, impacts the SCN molecular clock and SCN-dependent behavioral adaptations to circadian challenges in female mice.
View Article and Find Full Text PDFJ Inorg Biochem
September 2025
National Renewable Energy Laboratory, Biosciences Center, Golden, CO, USA. Electronic address:
Flavin-based electron bifurcation (FBEB) is employed by microorganisms for controlling pools of redox equivalents by reversibly splitting electron pairs into high- and low-energy levels from an initial midpoint potential. Our ability to harness this phenomenon is crucial for biocatalytic design which is limited by our understanding of energy coupling in the bifurcation system. In Pyrococcus furiosus, FBEB is carried out by the NADH-dependent ferredoxin:NADP-oxidoreductase (NfnSL), coupling the uphill reduction of ferredoxin in NfnL to the downhill reduction of NAD in NfnS from oxidation of NADPH.
View Article and Find Full Text PDFAnal Chem
September 2025
Embrapa Instrumentation, Rua XV de Novembro 1452, São Carlos, São Paulo 13560-970, Brazil.
Chocolates and other cocoa products represent a multibillion-dollar industry that has faced significant price increases, largely due to a surge in cocoa plant diseases linked to climate change. One potential solution for mitigating cocoa prices involves the use of cocoa butter equivalents, substitutes, or replacers. Consequently, a rapid method for simultaneously determining multiple properties of cocoa derivatives can serve as a valuable tool for research and development of new products, quality control, and regulatory agencies to ensure compliance with cocoa product standards.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
Core Manufacturing Technology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.
The direct deposition of piezoelectric ceramic thin films onto metal foils has become a significant challenge due to the increasing demand for embedded decoupling capacitors, nanogenerators, and flexible piezo-sensors. However, traditional thermal sintering (TS) methods present several issues for metal foils, including alterations in mechanical properties, the formation of wrinkles, and the need for precise control over the sintering atmosphere to prevent oxidation. In this study, we successfully crystallized BaTiO on a Ni foil under atmospheric conditions, mitigating thermal damage to the foil through a hybrid-solution-incorporated photoassisted chemical solution deposition (HS-PCSD) method.
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