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Metallic nanoparticles with binding probes that capture the specific analytes are generally employed in LSPR sensors.
Metallic nanoparticles with the unique optical and electrical properties have been widely investigated during the past decades.
Hence, metallic nanoparticles with spherical shape are commonly found at the end of nanorods grown by the metal-catalyzed VLS method.
Several researchers investigated metallic nanoparticles with sharp tips called nanostars to improve the localized electromagnetic field efficiency and applied them in developing high-sensitivity probes.
Using the template CNT, we prepared chemically stable, metallic nanoparticles with a well-defined size distribution and high rates of filling.
In both theoretical feasibility and experimental confirmation studies, several research groups introduced metallic nanoparticles with specialized shapes that have a higher efficiency to concentrate electromagnetic fields in optical regions.
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With the emergence of antibiotic resistance, symbiotic use of metallic nanoparticle with conventional antibiotics offers a better alternative for wrangling against antibiotic resistance.
Figure 7a compares the angular distribution of scattered light for a metallic (Ag Drude fit) to that of a dielectric (n = 2, k = 0) nanoparticle (in air) at the respective resonance wavelength of the quadrupole electric or magnetic mode: λ = 426 nm for the metallic nanoparticle with 120 nm radius and λ = 502 nm for the dielectric one with r = 170 nm.
A high-throughput pulsed laser ablation (HT-PLA) system was developed to rapidly prepare uniformly sized single- and multi-metallic nanoparticles with different diameters for catalytic applications.
In this review, we present the development of Pt-based catalysts and the uses of Pt-based bimetallic and multi-metallic nanoparticles with mixture, alloy and core-shell structures for nanocatalysis, energy conversion, catalytic nanomaterials and fuel cells (FCs).
Nanofluid is a new class of heat transfer fluids engineered by dispersing metallic or non-metallic nanoparticles with a typical size of less than 100 nm in the conventional heat transfer fluids.
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