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Impact of single-pulse, low-intensity laser post-processing on structure and activity of mesostructured cobalt oxide for the oxygen evolution reaction
Herein, we report nanosecond, single-pulse laser post-processing (PLPP) in a liquid flat jet
with precise control of the applied laser intensity to tune structure, defect sites, and the …
with precise control of the applied laser intensity to tune structure, defect sites, and the …
Future for inertial-fusion energy in Europe: a roadmap
The recent achievement of fusion ignition with laser-driven technologies at the National
Ignition Facility sets a historic accomplishment in fusion energy research. This …
Ignition Facility sets a historic accomplishment in fusion energy research. This …
STRATIFY: a comprehensive and versatile MATLAB code for a multilayered sphere
We present a computer code for calculating near-and far-field electromagnetic properties of
multilayered spheres. STRATIFY is a one-of-a-kind open-source package that allows for …
multilayered spheres. STRATIFY is a one-of-a-kind open-source package that allows for …
Grain boundaries improve hydrogen storage in Palladium hollow nanoparticles
Abstract Monte Carlo and Molecular Dynamics simulations were employed to explore the
enhanced hydrogen storage capabilities of palladium nanospheres with grain boundaries. It …
enhanced hydrogen storage capabilities of palladium nanospheres with grain boundaries. It …
Formation of hollow silver nanoparticles under irradiation with ultrashort laser pulses
F Sánchez-Pérez, O Borrell-Grueiro… - …, 2024 - degruyter.com
We have studied the formation of cavities in spherical silver nanoparticles embedded in
silica, irradiated with fs laser pulses that produce an intense electronic excitation …
silica, irradiated with fs laser pulses that produce an intense electronic excitation …
Molecular dynamics simulation of the production of hollow silver nanoparticles under ultrafast laser irradiation
C Jiang, Y Mo, H Wang, R Li, M Huang… - Computational Materials …, 2021 - Elsevier
We used classical molecular dynamics with a two-temperature model to investigate the
cavity-formation process of silver nanoparticles under ultrafast laser irradiation. We …
cavity-formation process of silver nanoparticles under ultrafast laser irradiation. We …
Inducing thermodynamically blocked atomic ordering via strongly driven nonequilibrium kinetics
Ultrafast light-matter interactions enable inducing exotic material phases by promoting
access to kinetic processes blocked in equilibrium. Despite potential opportunities, actively …
access to kinetic processes blocked in equilibrium. Despite potential opportunities, actively …
Controlled alloying of Au@ Ag core–shell nanorods induced by femtosecond laser irradiation
Bimetallic nanoparticles display unique physical and chemical properties, including
improved chemical stability, enhanced optical properties, or higher catalytic activity. Here, a …
improved chemical stability, enhanced optical properties, or higher catalytic activity. Here, a …
Understanding the impact of wall thickness on thermal stability of silver–gold nanocages
The thermal stability of nanocages is of great research value in both fundamental studies
and practical applications. In this work, by focusing on silver–gold (Ag–Au) alloyed …
and practical applications. In this work, by focusing on silver–gold (Ag–Au) alloyed …
Synthesis of hollow bimetallic nanoparticles from Ultrafast Laser Irradiation: An atomistic simulation study
Femtosecond laser irradiation in Au@ Ag, Ag@ Au core@ shell, and Au–Ag Janus-like
nanoparticles are investigated using molecular dynamics simulations. Our results show that …
nanoparticles are investigated using molecular dynamics simulations. Our results show that …