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Visible-light-driven carbon dioxide (CO) reduction presents a long-term answer to environmental challenges. However, the limited effective optical carriers generated by the limited response dynamics of the existing photocatalyst have severely hindered the development of high efficiency photocatalysts. Here, we report a method of cobalt atoms intercalation in ultrathin BiOBr nanosheets for boosted photocatalytic CO reduction. The experimental results show that there is a strong spatial charge transfer between the intercalated atoms and the two-dimensional material matrix. Cobalt atom intercalation regulates the reaction kinetics of the catalyst, enhances the distribution of photogenerated carriers on the surface of the catalyst, and inhibits the recombination of photogenerated electrons and holes. This 2D material intercalation technique increases the catalyst's light absorption efficiency while also improving adsorption and desorption of reactants and gas products. Combined with DFT calculations, it is demonstrated that the confinement effect of cobalt atom intercalation introduces additional catalytic active centres and reduces the free energy of the reaction intermediate COOH*. As a result, under 420 nm visible light irradiation in the gas-solid reaction with low water vapor content without any promoters or sacrificial agents, Co-BiOBr achieve a CO formation rate of 36.7 μmol g h, nine times that of the original BiOBr. This work provides guidance for the development of new and efficient photocatalysts.
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http://dx.doi.org/10.1002/cssc.202500128 | DOI Listing |
J Robot Surg
September 2025
Division of Gynecologic Oncology, Department of Obstetrics and Gynecology, UT Health San Antonio, 7703 Floyd Curl Drive, 7836, San Antonio, TX, 78229-3900, USA.
To evaluate intraoperative ventilatory mechanics during robotic-assisted hysterectomy in obese women with endometrial cancer and introduce the concept of a physiologic "ceiling effect" in respiratory strain. We conducted a retrospective cohort study of 89 women with biopsy-confirmed endometrial cancer who underwent robotic-assisted total hysterectomy between 2011 and 2015. Intraoperative ventilatory parameters, including plateau airway pressure and static lung compliance, were recorded at five-minute intervals.
View Article and Find Full Text PDFChem Commun (Camb)
September 2025
School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, China.
A hexagonal prism-shaped CuO/SnO heterostructured catalyst with electron-enriched SnO active sites was designed and synthesized. The formation of the CuO/SnO heterointerface and electron-enriched SnO active sites significantly enhanced the catalytic activity and selectivity for HCOO in electrochemical reduction of carbon dioxide (COER), while the well-defined hexagonal prismatic architecture provided catalytic and morphological stability. Consequently, the catalyst delivered a surpassing that of pure SnO by 5 mA cm at -1.
View Article and Find Full Text PDFJDS Commun
September 2025
Brazilian Agricultural Research Corporation, Juiz de Fora, Minas Gerais, Brazil, 36038-330.
This technical note describes a small ruminant respiration chamber system designed to accurately quantify the production of carbon dioxide (CO) and methane (CH). The system consists of 3 open-circuit respiration chambers, flow meters, gas analyzers, and an accessible environmental control system. To validate its performance, gas recovery tests were conducted by injecting CO and CH at 4 constant flow rates: 0.
View Article and Find Full Text PDFJDS Commun
September 2025
Department of Animal Science, University of Nebraska-Lincoln, Lincoln, NE 68503.
Methane (CH), carbon dioxide (CO), and oxygen (O) are the major gases produced by dairy cattle as a result of rumen fermentation and metabolism, and thus, their concentrations are frequently measured as a way of estimating heat production and energy metabolism. A well-utilized method of measuring gas consumption and production to estimate heat production is indirect calorimetry, which requires bags to retain the sampled gases until analysis. The objective of this study was to determine the ability of a polyvinyl fluoride gas bag (PF) and a multilayer fabrication gas bag containing an aluminum layer (NAP) to maintain respiratory gas composition in comparison to a polyethylene terephthalate bag (PET).
View Article and Find Full Text PDFCureus
August 2025
Stem Cell and Regenerative Biology Laboratory, Sri Ramachandra Institute of Higher Education and Research, Chennai, IND.
Introduction: The presence of stem cells in the ovary has been a topic of discussion due to their questionable existence. Isolation of stem cells has been possible by enzymatic digestion; however, the percentage of cells harvested and expanded has not been satisfactory. This could be due to the lack of optimal adhesion provided by the standard commercial culture dishes, which affects the initial attachment and further growth of cells.
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