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Glassy inorganic-organic hybrid materials for photonic applications
Glass is an integral part of the amorphous materials family that has shown great potential in
applications ranging from daily life to high-tech fields such as healthcare, architecture …
applications ranging from daily life to high-tech fields such as healthcare, architecture …
Understanding glass through differential scanning calorimetry
Differential scanning calorimetry (DSC) is a powerful tool to address some of the most
challenging issues in glass science and technology, such as the nonequilibrium nature of …
challenging issues in glass science and technology, such as the nonequilibrium nature of …
Revealing the relationship between liquid fragility and medium-range order in silicate glasses
Despite decades of studies, the nature of the glass transition remains elusive. In particular,
the sharpness of the dynamical arrest of a melt at the glass transition is captured by its …
the sharpness of the dynamical arrest of a melt at the glass transition is captured by its …
Investigation on the structural origin of low thermal expansion coefficient of fused silica
Fused silica exhibits dramatically different coefficient of thermal expansions (CTE) in
different scales, ranging from 9.1× 10− 6 K− 1 at the short-range, to 21.2× 10− 6 K− 1 at the …
different scales, ranging from 9.1× 10− 6 K− 1 at the short-range, to 21.2× 10− 6 K− 1 at the …
Maxwell relaxation time for nonexponential α‐relaxation phenomena in glassy systems
We examine the mean relaxation time predicted by the Maxwell relation for stress and
structural α‐relaxation phenomena. We express this relation using the Markov network …
structural α‐relaxation phenomena. We express this relation using the Markov network …
Proof of concept for a nonadditive stochastic model of supercooled liquids
ACP Rosa Jr, E Brito, WS Santana, C Cruz - Physical Review E, 2024 - APS
The recently proposed nonadditive stochastic model (NSM) offers a coherent physical
interpretation for diffusive phenomena in glass-forming systems. This model presents …
interpretation for diffusive phenomena in glass-forming systems. This model presents …
Non-Arrhenius behavior and fragile-to-strong transition of glass-forming liquids
Characterization of the non-Arrhenius behavior of glass-forming liquids is a broad avenue
for research toward the understanding of the formation mechanisms of noncrystalline …
for research toward the understanding of the formation mechanisms of noncrystalline …
Proof-of-concept for a nonadditive stochastic model of supercooled liquids
ACPR Junior, EBA Junior, WS Santana… - arxiv preprint arxiv …, 2024 - arxiv.org
The recently proposed non-additive stochastic model (NSM) offers a coherent physical
interpretation for diffusive phenomena in glass-forming systems. This model presents non …
interpretation for diffusive phenomena in glass-forming systems. This model presents non …
Molecular dynamics study on the viscosity of glass‐forming systems near and below the glass transition temperature
Temperature‐dependent viscosity is critical to decipher two profound questions in
condensed matter physics, namely the glass transition and the relaxation of amorphous …
condensed matter physics, namely the glass transition and the relaxation of amorphous …
Non-additive stochastic model for supercooled liquids: new perspectives for glass science
AC do Prado Rosa Jr, E Brito, W Santana… - The European Physical …, 2024 - Springer
We present a review of the Non-additive Stochastic Model (NSM) for supercooled liquids, an
efficient approach for diffusive processes that provide a suitable interpretation for the non …
efficient approach for diffusive processes that provide a suitable interpretation for the non …