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April 23, 2026Physical Chemistry Chemical Physics0 citations

Plasmonic damping and hot-carrier localization in Al–Pd/Pt nanostars

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JMJunais Habeeb Mokkath

Key Points

  • This research aims to understand the plasmonic properties and hot-carrier dynamics of aluminum nanostars with Pd and Pt functionalization.
  • Employ an atomistic fluctuating-charge and fluctuating-dipole electrodynamic framework.
  • Analyze absorption spectra, near-field maps, and induced charge densities of aluminum and metal-functionalized nanostars.
  • Identify trends in resonance shifts and damping effects among different metal decorations.
  • The pure Al nanostar exhibits a strong localized surface plasmon resonance (LSPR) at 2.12 eV, redshifted to 1.88 eV and 1.76 eV for Pd and Pt, respectively.
  • Damping increased due to transition-metal interband losses, affecting coherent charge oscillations.
  • Pd and Pt tips are shown to localize dissipative energy sinks at the core-tip junctions.

Abstract

We investigate the plasmonic response of aluminum nanostars and their Pd- and Pt-functionalized derivatives using an atomistic fluctuating-charge and fluctuating-dipole electrodynamic framework. Full-resolution absorption spectra, near-field maps, induced charge densities, and hot-carrier proxies reveal clear composition-dependent trends. The pure Al nanostar supports a strong LSPR at 2.12 eV, while Pd and Pt decoration redshifts the resonance to 1.88 eV and 1.76 eV and increases damping due to transition-metal interband losses. Near-field and induced-density analyses show that Pd and Pt tips suppress coherent charge oscillations and redistribute hotspots toward the core-tip junctions. Hot-carrier proxies further indicate that transition-metal sites act as localized dissipative sinks. These results establish Al-Pd and Al-Pt nanostars as tunable mixed-metal antennas for UV plasmonics and photocatalysis, and highlight the importance of atomistic electrodynamics in capturing plasmon-interband hybridization in heterometallic nanostructures.

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Junais Habeeb Mokkath (2026) studied this question.

synapsesocial.com/papers/69e9ba6b85696592c86eca0ahttps://doi.org/10.1039/d5cp04794c
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