Please use this identifier to cite or link to this item: http://hdl.handle.net/1843/50636
Type: Artigo de Periódico
Title: Light-heat conversion dynamics in highly diversified water-dispersed hydrophobic nanocrystal assemblies
Authors: Andrea Mazzanti
Giuseppe Della Valle
Marie-Paule Pileni
Zhijie Yang
Nailiang Yang
Giancarlo Rizza
Pierre-Eugène Coulon
Cristian Manzoni
Ana Maria de Paula
Giulio Cerullo
Mychel Gonçalves Silva
Abstract: We investigate, with a combination of ultrafast optical spectroscopy and semiclassical modeling, the photothermal properties of various water-soluble nanocrystal assemblies. Broadband pump–probe experiments with ∼100-fs time resolution in the visible and near infrared reveal a complex scenario for their transient optical response that is dictated by their hybrid composition at the nanoscale, comprising metallic (Au) or semiconducting (Fe3O4) nanostructures and a matrix of organic ligands. We track the whole chain of energy flow that starts from light absorption by the individual nanocrystals and subsequent excitation of out-of-equilibrium carriers followed by the electron–phonon equilibration, occurring in a few picoseconds, and then by the heat release to the matrix on the 100-ps timescale. Two-dimensional finite-element method electromagnetic simulations of the composite nanostructure and multitemperature modeling of the energy flow dynamics enable us to identify the key mechanism presiding over the light–heat conversion in these kinds of nanomaterials. We demonstrate that hybrid (organic–inorganic) nanocrystal assemblies can operate as efficient nanoheaters by exploiting the high absorption from the individual nanocrystals, enabled by the dilution of the inorganic phase that is followed by a relatively fast heating of the embedding organic matrix, occurring on the 100-ps timescale.
Subject: Nanocristais
Espectroscopia ótica
Luz
Calor
language: eng
metadata.dc.publisher.country: Brasil
Publisher: Universidade Federal de Minas Gerais
Publisher Initials: UFMG
metadata.dc.publisher.department: ICX - DEPARTAMENTO DE FÍSICA
Rights: Acesso Aberto
metadata.dc.identifier.doi: https://doi.org/10.1073/pnas.1817850116
URI: http://hdl.handle.net/1843/50636
Issue Date: 2019
metadata.dc.url.externa: https://www.pnas.org/doi/full/10.1073/pnas.1817850116
Appears in Collections:Artigo de Periódico

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