Literature DB >> 26767891

Fast Assembly of Gold Nanoparticles in Large-Area 2D Nanogrids Using a One-Step, Near-Infrared Radiation-Assisted Evaporation Process.

André Utgenannt, Ross Maspero, Andrea Fortini, Rebecca Turner, Marian Florescu, Christopher Jeynes, Antonios G Kanaras1, Otto L Muskens1, Richard P Sear, Joseph L Keddie.   

Abstract

When fabricating photonic crystals from suspensions in volatile liquids using the horizontal deposition method, the conventional approach is to evaporate slowly to increase the time for particles to settle in an ordered, periodic close-packed structure. Here, we show that the greatest ordering of 10 nm aqueous gold nanoparticles (AuNPs) in a template of larger spherical polymer particles (mean diameter of 338 nm) is achieved with very fast water evaporation rates obtained with near-infrared radiative heating. Fabrication of arrays over areas of a few cm(2) takes only 7 min. The assembly process requires that the evaporation rate is fast relative to the particles' Brownian diffusion. Then a two-dimensional colloidal crystal forms at the falling surface, which acts as a sieve through which the AuNPs pass, according to our Langevin dynamics computer simulations. With sufficiently fast evaporation rates, we create a hybrid structure consisting of a two-dimensional AuNP nanoarray (or "nanogrid") on top of a three-dimensional polymer opal. The process is simple, fast, and one-step. The interplay between the optical response of the plasmonic Au nanoarray and the microstructuring of the photonic opal results in unusual optical spectra with two extinction peaks, which are analyzed via finite-difference time-domain method simulations. Comparison between experimental and modeling results reveals a strong interplay of plasmonic modes and collective photonic effects, including the formation of a high-order stopband and slow-light-enhanced plasmonic absorption. The structures, and hence their optical signatures, are tuned by adjusting the evaporation rate via the infrared power density.

Entities:  

Keywords:  IR heating; coupling; evaporation; gold nanoparticles; inverse opal; photonics; plasmonics; self-assembly

Year:  2016        PMID: 26767891     DOI: 10.1021/acsnano.5b06886

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  4 in total

1.  Mechanochromic and Thermochromic Sensors Based on Graphene Infused Polymer Opals.

Authors:  Izabela Jurewicz; Alice A K King; Ravi Shanker; Matthew J Large; Ronan J Smith; Ross Maspero; Sean P Ogilvie; Jurgen Scheerder; Jun Han; Claudia Backes; Joselito M Razal; Marian Florescu; Joseph L Keddie; Jonathan N Coleman; Alan B Dalton
Journal:  Adv Funct Mater       Date:  2020-05-19       Impact factor: 18.808

2.  Linear self-assembly and grafting of gold nanorods into arrayed micrometer-long nanowires on a silicon wafer via a combined top-down/bottom-up approach.

Authors:  Elena Lestini; Codrin Andrei; Dominic Zerulla
Journal:  PLoS One       Date:  2018-04-17       Impact factor: 3.240

3.  Effect of Particle Interactions on the Assembly of Drying Colloidal Mixtures.

Authors:  James D Tinkler; Alberto Scacchi; Maialen Argaiz; Radmila Tomovska; Andrew J Archer; Helen Willcock; Ignacio Martín-Fabiani
Journal:  Langmuir       Date:  2022-04-19       Impact factor: 4.331

4.  Particulate Coatings via Evaporation-Induced Self-Assembly of Polydisperse Colloidal Lignin on Solid Interfaces.

Authors:  Oriol Cusola; Samu Kivistö; Sampsa Vierros; Piotr Batys; Mariko Ago; Blaise L Tardy; Luiz G Greca; M Blanca Roncero; Maria Sammalkorpi; Orlando J Rojas
Journal:  Langmuir       Date:  2018-05-10       Impact factor: 3.882

  4 in total

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