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Ma, Y., Li, W., Cho, E.C., Li, Z., Yu, T., Zeng, J., et al. (2010) Au@Ag Core-Shell Nanocubes with Finely Tuned and Well-Controlled Sizes, Shell Thicknesses, and Optical Properties. ACS Nano, 4, 6725-6734.
https://doi.org/10.1021/nn102237c
has been cited by the following article:
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TITLE:
Gold-Based Core@shell Heteronanostructured Materials for Biomedical Engineering Application: Recent Trends & New Perspectives
AUTHORS:
Déogratias Ntirikwendera, Solange Mukeshimana, Jean Claude Uwamahoro
KEYWORDS:
Core@shell, Heteronanostructures, Surface Plasmon Resonance, Quantum Dots, Biomedical Engineering
JOURNAL NAME:
Open Access Library Journal,
Vol.11 No.6,
June
28,
2024
ABSTRACT: Core@shell nanoparticles are advanced functional materials with modified properties combined into a single unity leading to their enhanced physico-chemical properties. In biomedical field, bi/tri/or multi-metallic Gold-Based Nanocrystals (GBNCs) and metamaterials, with core@shell heteronanostructures exhibit superior plasmonic properties with a broad range from sensing technology to nanomedicine. In this review paper, we investigated the recent trends of gold nanoparticles with a particular focus on core@shell heteronanostructured materials and their application in biomedical engineering. All properties are due to their size, shape, and structure-dependent Localized Surface Plasmon Resonances (LSPRs); owing to the enhancement of the plasmonic properties of isotropic and anisotropic Au NPs, including Quantum dots that are tailored to generate electromagnetic “hots sports”; highly sensitive for the diagnostic and therapeutic applications.