
The development of effective nanomaterials that exhibit antibacterial, antifungal, antioxidant and anticancer properties offers an appealing strategy to tackle current issues in biomedical research. The present study reports the synthesis...
Fe/NC activates PMS through Fe–N x active sites, promoting its heterolytic cleavage and 1 O 2 as the dominant reactive species, which then oxidizes and degrades TC, ultimately mineralizing it into CO 2 and H 2 O via a non-radical reaction pathway.
In the present study, Co₀.₁Mg₀.₃Ni₀.₃Zn₀.₃Fe₂O₄ magnetic nanoparticles with a unique composition were synthesized for the first time using a simple sol–gel auto-combustion method with citric acid as a fuel/chelating agent...
In/Sn introduced during precursor synthesis stabilizes NCFM lattice and boosts cycling stability.
Density functional theory calculations are used to explore the relative stability, electronic structure and HER/OER activity of five V2O3 surfaces: (001), (012), (100), (104) and (110). Surface energy analyses suggest...
Ultrafast microwave plasma converts bamboo biomass into few-layer graphene, enabling a Fe 3 O 4 -decorated composite phase-change material with enhanced heat transfer, photothermal conversion, and shape stability.
As an emerging area, gas therapy holds promise as an effective paradigm for cancer treatment.
Engineering ZnO with graphene oxide enhances the conductivity of ZnO, enabling fast response for glucose detection while outperforming reported materials.
In situ copolymerized DP@SiO₂ solid electrolyte: high conductivity, flame retardancy, self-healing, Li⁺ transport, Li-metal battery compatibility.
Two N-rich BFL-COFs were designed for I 2 /CO 2 capture. BFL-COF-DMePDA achieves 5.10 g g −1 I 2 uptake via polyiodide formation at N sites. Cu 2+ forms Cu–I, confirming N-site dominance.
Dimethylselenide (Me2Se), a simple and small organochalcogen, has been used as a ligand to synthesize complexes [PdII(Me2Se)2Cl2] (1) and [RuII(p-cymene)(Me2Se)2Cl](PF6) (2). Complexes 1 and 2 have been characterized by multi-nuclear...
Transition metal oxides (TMOs) have become a hot topic in research on pseudocapacitive materials for supercapacitors due to their high redox activity. However, its application is limited by its low...
In this work, a combined strategy of in‑situ hydrothermal growth, gradient anion modification, and potentiostatic electrodeposition was employed to fabricate core-shell structured, mesoporous Zn-Ni-Co ternary selenide nanowires on nickel foam...
Ionic liquids such as choline/lactate (CALA) have non-covalently modified antioxidative enzyme catalase to extend the blood residence time of proteins instead of PEGylation. The O 2 production from the CALA/catalase complexes...
To address the efficient removal of radioactive Cs+ and the solid-liquid separation limitations of conventional powdered Prussian blue analogues, zinc-based Prussian blue (ZPB) was synthesized as the Cs+-binding active phase,...
The development of anode materials with high-rate capability and long-cycle stability is essential for advancing lithium-ion batteries (LIBs). Herein, we realize the rational modulation of 3D flower-like hierarchical NbOPO4 via...
The dual O v sites construct a relay-like electron transfer pathway, which greatly accelerates the spatial separation of charge carriers.
BGO nanoparticles induce electroactive β-phase crystallization in PVDF, producing flexible nanocomposite films with enhanced dielectric, thermal, optical, and mechanical properties.
Among Fe, Co, Ni, Cu, and Ag supported on activated carbon, Co exhibits highly dispersed Co 2+ /Co 0 species along with abundant oxygen vacancies, enabling Co/AC to achieve 100 mol% conversion and 95.1 mol% DMF selectivity during HMF hydrogenation.
KOH/NaOH synergistic activation of waste papaya seeds yields micro-mesoporous carbon (2334.13 m 2 g −1 ), delivering a specific capacitance of 283 F g −1 (1 A g −1 ) and 99% capacitance retention (5000 cycles).