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Jorge Pérez-Juste

Researcher at University of Vigo

Publications -  197
Citations -  19709

Jorge Pérez-Juste is an academic researcher from University of Vigo. The author has contributed to research in topics: Nanoparticle & Nanorod. The author has an hindex of 69, co-authored 188 publications receiving 16540 citations. Previous affiliations of Jorge Pérez-Juste include University of Santiago de Compostela & University of Duisburg-Essen.

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Ordered Arrays of Gold Nanostructures from Interfacially Assembled Au@PNIPAM Hybrid Nanoparticles

TL;DR: The transfer process presented enables the decoration of topologically structured substrates with gold nanoparticle arrays, and the order of the initial monolayers is retained in the arrays of inorganic gold nanoparticles.
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Steric Hindrance Induces crosslike Self-Assembly of Gold Nanodumbbells

TL;DR: It is shown that the combination of patchiness (attraction) and shape (steric hindrance) allows assembling gold nanodumbbell building blocks into crosslike dimers with well-controlled interparticle distance and relative orientation.
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Au@Ag SERRS tags coupled to a lateral flow immunoassay for the sensitive detection of pneumolysin

TL;DR: A lateral flow immunoassay for the ultrasensitive detection of penumolysin employing plasmonic Surface-Enhanced Resonance Raman Scattering (SERRS) tag as labelled probe and the limit of detection of the SERRS-based LFIA was 1 pg mL-1.
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Rapid Epitaxial Growth of Ag on Au Nanoparticles: From Au Nanorods to Core–Shell Au@Ag Octahedrons

TL;DR: A simple and rapid method to grow silver on single-crystal Au nanorods, resulting in single- Crystal core–shell Au@Ag nanoparticles with tailored morphology, ranging from nanorod all the way to spheres, through octahedrons, and thereby giving rise to a remarkable control over the optical response spanning the whole visible range and into the near IR.
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Gold Nanooctahedra with Tunable Size and Microfluidic-Induced 3D Assembly for Highly Uniform SERS-Active Supercrystals

TL;DR: In this article, aqueous-based seed-mediated growth of monodisperse gold octahedra with wide range of sizes (50-150 nm in side length) by reducing different amounts of HAuCl4 on preformed single crystalline gold nanorods using butenoic acid as reducing agent.