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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. Structural characterization X-ray diffraction confirmed the presence of the hexagonal CoTe phase, with noticeable phase shifts attributed to Bi incorporation. Raman spectroscopy provided insights into the vibrational modes of CoTe, while transmission electron microscopy further verified the CoTe phase and measured interplanar spacing. A field emission scanning electron microscopy morphological study revealed a constant nanoparticle-like structure that did not alter as the concentration of Bi increased. Elemental composition was examined through X-ray photoelectron spectroscopy, confirming the composition of the expected material. Additionally, UV-Vis spectroscopy revealed a bandgap reduction in the range of 3.35-1.64 eV, suggesting modifications in the material's optical properties. Meanwhile, the refractive index value of the material gradually increased in the range of 2.00-3.08. The photoresponse study showed a photocurrent ranging from 229 to 810 μA, with the highest observed in the Bi-3 sample. Additionally, a maximum nonlinear absorption coefficient () of 1.448 cm W was recorded. These results indicate the material's strong potential for nonlinear photonics and optoelectronic applications.
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http://dx.doi.org/10.1039/d5dt01043h | DOI Listing |
RSC Adv
September 2025
Laboratory of Constitution and Reaction of Matter, UFR SSMT, Felix Houphouet Boigny University Abidjan 22 BP 582 Cote d'Ivoire.
Melamine is an additive used fraudulently to enrich foods with nitrogen, particularly in the dairy industry. It is also known as the main metabolite or degradation phytosanitary product of cyromazine. However, the numerous incidents involving living beings in aquatic environments, children and pets fed with products made from melamine in China and certain African countries have led to distrust of melamine in food.
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August 2025
Laboratory of Molecular and Cellular Screening Processes, Centre of Biotechnology of Sfax P.O. Box 1177 3018 Sfax Tunisia.
Numerous studies have demonstrated the antiproliferative potential of copper-based nanoparticles (Cu-based NPs) in antibacterial and anticancer applications. This study investigates how thermal annealing influences the structural, optical, and antibacterial properties of Cu-based NPs. X-ray diffraction (XRD) analysis revealed a monoclinic CuSO(OH) phase for the as-prepared powder, and monoclinic CuO phase after annealing, alongside a notable increase in crystallite size from 8.
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August 2025
Department of Biomedical Engineering, University of Connecticut, Storrs, CT 06269, United States of America. Electronic address:
Various nanomaterials have been developed for drug delivery, but the vast majority are spherical nanoparticles (50-500 nm in diameter). This limits their ability to target and infiltrate hard-to-penetrate tissues, such as certain solid tumors with a dense extracellular matrix (ECM). To investigate how the key physical parameter of shape influences tumor targeting, we developed Janus base nanoparticles (JBNps), a family of rod-shaped delivery vehicles that self-assemble into nanotube bundles with encapsulated drug cargos.
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 PDF