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Recent advances of non-noble metals based plasma materials in photocatalysis
Localized surface plasmon resonance (LSPR) is a highly promising approach to improve the
photocatalytic performance. Noble metal nanoparticles (NPs) with LSPR characteristics …
photocatalytic performance. Noble metal nanoparticles (NPs) with LSPR characteristics …
AtomAI framework for deep learning analysis of image and spectroscopy data in electron and scanning probe microscopy
Over the past several decades, electron and scanning probe microscopes have become
critical components of condensed matter physics, materials science and chemistry research …
critical components of condensed matter physics, materials science and chemistry research …
Plasmonic metal oxides and their biological applications
Metal oxides modified with dopants and defects are an emerging class of novel materials
supporting the localized surface plasmon resonance across a wide range of optical …
supporting the localized surface plasmon resonance across a wide range of optical …
Engineering plasmonic semiconductors for enhanced photocatalysis
Localized surface plasmon resonance (LSPR) is an intriguing phenomenon induced by the
collective oscillations of free carriers with incident light, and has attracted considerable …
collective oscillations of free carriers with incident light, and has attracted considerable …
Wavelength tunable infrared perfect absorption in plasmonic nanocrystal monolayers
The ability to efficiently absorb light in ultrathin (subwavelength) layers is essential for
modern electro-optic devices, including detectors, sensors, and nonlinear modulators …
modern electro-optic devices, including detectors, sensors, and nonlinear modulators …
Structural order and plasmonic response of nanoparticle monolayers
Collective plasmon resonances in superlattice assemblies of metallic nanoparticles are
influenced by nanoparticle attributes and assembly structure. Although grain boundaries …
influenced by nanoparticle attributes and assembly structure. Although grain boundaries …
Physics discovery in nanoplasmonic systems via autonomous experiments in scanning transmission electron microscopy
Physics‐driven discovery in an autonomous experiment has emerged as a dream
application of machine learning in physical sciences. Here, this work develops and …
application of machine learning in physical sciences. Here, this work develops and …
Fluorine-doped ATO NCs with enhanced LSPR effect for smart windows with adaptive solar modulation
Z Yang, M Zhang, X Zhao, R Hu, H Zhao, S Zeb… - Ceramics …, 2024 - Elsevier
Smart windows with excellent near-infrared (NIR) light shielding capacity and controlled
visible light transmittance are expected to reduce building energy consumption and improve …
visible light transmittance are expected to reduce building energy consumption and improve …
Advances in ultrahigh-energy resolution EELS: phonons, infrared plasmons and strongly coupled modes
Abstract Nowadays, sub-50 meV atom-wide electron probes are routinely produced for
electron energy loss spectroscopy in transmission electron microscopes due to …
electron energy loss spectroscopy in transmission electron microscopes due to …
Singular and Nonsingular Transitions in the Infrared Plasmons of Nearly Touching Nanocube Dimers
Narrow gaps between plasmon-supporting materials can confine infrared electromagnetic
energy at the nanoscale, thus enabling applications in areas such as optical sensing …
energy at the nanoscale, thus enabling applications in areas such as optical sensing …