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Pre-intercalation has emerged as a highly effective strategy to enhance structural integrity and ion transport kinetics in cathodes for aqueous Zn-ion batteries. Here, we report a zinc-ion pre-intercalated hydrate vanadium oxide cathode, in which the initial insertion of Zn induces a significant expansion of the interplanar spacing, followed by contraction at higher Zn concentrations owing to strong electrostatic interactions with the VO framework. Such competing expansion and contraction of interplanar spacing enhances the overall electrochemical properties. In addition, the pre-intercalated Zn facilitates the in situ formation of a Zn(OH)VO·2HO cathode-electrolyte interphase (CEI) layer, which not only suppresses vanadium dissolution but also regulates the desolvation of hydrated Zn, thus further enhancing the structural integrity and interfacial kinetics. Benefiting from these merits, the Zn pre-intercalated hydrate vanadium pentoxide (denoted as 2Zn-VOH) cathode delivers a high capacity of 395 mA h g at 0.1 A g, exhibits excellent cycling stability at both low and high current densities, and retains outstanding performance under low-temperature conditions (295 mAh g at 0.1 A g and - 10 °C, with 83.8 % capacity retention after 1000 cycles at 0.2 A g).
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http://dx.doi.org/10.1016/j.jcis.2025.138867 | DOI Listing |
J Colloid Interface Sci
September 2025
Department of Materials Science and Engineering, University of Washington, Seattle, WA 98195, USA. Electronic address:
Pre-intercalation has emerged as a highly effective strategy to enhance structural integrity and ion transport kinetics in cathodes for aqueous Zn-ion batteries. Here, we report a zinc-ion pre-intercalated hydrate vanadium oxide cathode, in which the initial insertion of Zn induces a significant expansion of the interplanar spacing, followed by contraction at higher Zn concentrations owing to strong electrostatic interactions with the VO framework. Such competing expansion and contraction of interplanar spacing enhances the overall electrochemical properties.
View Article and Find Full Text PDFLuminescence
September 2025
Laser Spectroscopy Programme, Department of Physics, Karnatak University, Dharwad, Karnataka, India.
Synthesis of (AIS) nanoparticles and spectroscopic investigation of energy transfer phenomena are described. Powder XRD identified broad diffraction peaks that are consistent with the tetragonal chalcopyrite phase of NPs. Tetragonal structure was confirmed by the interplanar spacing indices and peak positions, with a shift in XRD peaks, indicating reduced lattice parameters due to increased concentration.
View Article and Find Full Text PDFDalton Trans
August 2025
Department of Engineering and Materials Physics, Institute of Chemical Technology-Indian Oil Odisha Campus, Bhubaneswar, 751013, India.
The exceptional properties and broad applicability of CoTe nanoparticles make them highly relevant for various technological applications, particularly in optoelectronics. Introducing a metal dopant into a nanomaterial matrix has been shown to enhance its characteristics, thereby expanding its potential use. This study presents a straightforward hydrothermal synthesis method for Bi-doped CoTe nanoparticles, wherein four different samples were synthesized by varying the Bi doping concentration.
View Article and Find Full Text PDFDiscov Nano
July 2025
Post Graduate Department of Chemistry, K. R. T. Arts, B. H. Commerce, and A. M. Science College, SPPU, Nashik, Maharashtra, 422002, India.
In this work, we studied a sonication-assisted method to synthesize Apis mellifera honey bee venom-loaded calcium oxide nanocomposites (BVNPs@CaO NCs). It effectively maintains the bioactivity and stability of the BV bioactive components on the surface of the CaO nanomaterials, showing potential bio-medicinal applications. The crude BV was purified and homogenized, and BVNPs were prepared via hydrothermal synthesis.
View Article and Find Full Text PDFMolecules
July 2025
Department of Chemistry and Technology of Polymers, Cracow University of Technology, Warszawska 24, 31-155 Krakow, Poland.
A series of linear isocyanate-free polyurethanes (NIPUs) were obtained via the aminolysis of erythritol dicarbonate (EDC) with polyethers (diamino-PEG, diamino-PPO, and diamino-PEG/PPO) and 1,12-diaminododecane (DADD), which acts as a chain extender to form hard segments. The obtained NIPUs contained different concentrations of DADD relative to the polyether (72.5-80 wt%).
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