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      Microstructural insights into EUROFER97 batch 3 steels

      , , ,
      Nuclear Materials and Energy
      Elsevier BV

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          Three-dimensional imaging of localized surface plasmon resonances of metal nanoparticles.

          The remarkable optical properties of metal nanoparticles are governed by the excitation of localized surface plasmon resonances (LSPRs). The sensitivity of each LSPR mode, whose spatial distribution and resonant energy depend on the nanoparticle structure, composition and environment, has given rise to many potential photonic, optoelectronic, catalytic, photovoltaic, and gas- and bio-sensing applications. However, the precise interplay between the three-dimensional (3D) nanoparticle structure and the LSPRs is not always fully understood and a spectrally sensitive 3D imaging technique is needed to visualize the excitation on the nanometre scale. Here we show that 3D images related to LSPRs of an individual silver nanocube can be reconstructed through the application of electron energy-loss spectrum imaging, mapping the excitation across a range of orientations, with a novel combination of non-negative matrix factorization, compressed sensing and electron tomography. Our results extend the idea of substrate-mediated hybridization of dipolar and quadrupolar modes predicted by theory, simulations, and electron and optical spectroscopy, and provide experimental evidence of higher-energy mode hybridization. This work represents an advance both in the understanding of the optical response of noble-metal nanoparticles and in the probing, analysis and visualization of LSPRs.
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            Recent Developments in Irradiation-Resistant Steels

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              Accounting for Poisson noise in the multivariate analysis of ToF-SIMS spectrum images

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                Author and article information

                Journal
                Nuclear Materials and Energy
                Nuclear Materials and Energy
                Elsevier BV
                23521791
                June 2023
                June 2023
                : 35
                : 101445
                Article
                10.1016/j.nme.2023.101445
                68e6bfe8-8b60-4400-981d-0504fbbc974d
                © 2023

                https://www.elsevier.com/tdm/userlicense/1.0/

                http://creativecommons.org/licenses/by/4.0/

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