High-voltage and Ni-rich cathode materials are highly attractive due to their high specific energy. However, cathode-electrolyte interphase (CEI) layer often fails to adequately protect cathode materials from side rea...
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With increasing safety concerns of synthetic antioxidants, completely or partially substituting these compounds with natural ones is a potentially feasible approach. However, the stabilization effectiveness of natural...
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The extensive use of polymeric materials in single-use packaging has driven the need to develop biodegradable *** study investigates the incorporation of graphene oxide(GO)and Moringa oleifera seed oil(MOSO)into a gel...
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The extensive use of polymeric materials in single-use packaging has driven the need to develop biodegradable *** study investigates the incorporation of graphene oxide(GO)and Moringa oleifera seed oil(MOSO)into a gelatin matrix to create polymer films and evaluate their potential as active packaging *** properties of these films were evaluated using structural,thermal,mechanical,optical,and physicochemical methods to determine their suitability for food packaging *** results showed that GO and MOSO were homogeneously dispersed in the gelatin matrix,forming colloidal particles(around 5μm in diameter).The addition of GO increased opacity by approximately 20 times the base value while MOSO affected light transmittance without impacting *** properties were affected differently,GO acted as a crosslinking agent reducing elongation and increasing tensile strength at break,on the other hand MOSO acted as a plasticizer,making films more plastic increasing elongation a 30%.These effects counteracted each other,and similar behavior was recorded in differential scanning *** films exhibited an improved water vapor resistance,which is crucial for food *** findings indicate that the incorporation of GO and MOSO into a gelatin matrix may produce biodegradable polymer films with enhanced properties,suitable for active packaging in the food industry.
Neuropeptides configure the feeding network of Aplysia. For example, egestive activity is promoted by small cardioactive peptide (SCP), and ingestive activity is promoted by a combination of feeding circuit activating...
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Direct imaging of transient electronic coherences in molecules has been challenging, with the potential to control electron motions and influence reaction outcomes. We propose a novel time-resolved vortex electron dif...
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Direct imaging of transient electronic coherences in molecules has been challenging, with the potential to control electron motions and influence reaction outcomes. We propose a novel time-resolved vortex electron diffraction technique to spatially resolve transient electronic coherences in isolated molecules. By analyzing helical dichroism diffraction signals, the contribution of electronic populations cancels out, isolating the purely electronic coherence signals. This allows direct monitoring of the time evolution and decoherence of transient electronic coherences in molecules.
Magnetic topological materials LnSbTe (Ln = lanthanide) have attracted intensive attention because of the presence of interplay between magnetism, topological, and electron correlations depending on the choices of mag...
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Magnetic topological materials LnSbTe (Ln = lanthanide) have attracted intensive attention because of the presence of interplay between magnetism, topological, and electron correlations depending on the choices of magnetic Ln elements. Varying Sb and Te composition is an efficient approach to control structural, magnetic, and electronic properties. Here, we report on the composition-dependent properties in PrSbxTe2−x. We identified the tetragonal-to-orthorhombic structure transitions in this material system and very large negative magnetoresistance in the x=0.3 composition, which might be ascribed to the coupling between magnetism and transport. Such unusual magnetotransport enables PrSbxTe2−x topological materials as a promising platform for device applications.
This study was designed to investigate the dichotomous effects of titanium dioxide nanoparticles (TiO2NPs) at varying concentrations (0, 50, 100, 1000, and 2500 ppm) on the physiological, biochemical, and antioxidativ...
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The authors regret to report that the images for panels h (Plain PDMS) and I (MCF7-imprinted PDMS) in Fig. 3 were mistakenly taken from the same dataset, resulting in the omission of the correct image in panel h for t...
Correction to: Nature Reviews Materialshttps://***/10.1038/s41578-024-00759-x, published online 9 January 2025 In the version of the article initially published, the Acknowledgements section was missing and has now be...
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