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In2O3 species promote the outward spreading of Cu∗ (intermediate species) and improve the Cu∗ diffusion rate at the reactive interfaces.
Porosity evolution at reactive interfaces is a key process that governs the evolution and performances of many engineered systems that have important applications in earth and environmental sciences.
The behaviour of the highly reactive interfaces during the processing of nanocrystallised multilayered materials has been investigated in the present work.
Using thermodynamic and kinetic models of growth kinetics of the reaction layer at reactive interfaces, the driving force of η-Cu6Sn5 formation cannot be the cause of this large difference.
The code is based on the Euler equations and employs an algorithm for the propagation of reactive interfaces, RDEM, which includes a combustion wave, as an integrable part of the Reactive Riemann problem, propagating with a fundamental flame speed (being a function of initial mixture properties as well as gas dynamics parameters).
Classical toxicology protocols may not always be suitable for the assessment of nanomaterials as their interaction with biological systems is governed by a series of characteristics not found for molecules: chemically reactive interfaces, the combination of solid-state properties and mobility, and altered biodistribution (more details can be found in [ 30]).
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The tribological behaviors of Ni Cr alloy/ceramic tribo-couples were well correlated with the interfacial characteristics, namely the reactive interface and the non-reactive interface.
A poisoning mechanism of the moving reactive interface between the layer and the solvent is introduced.
Development and applications of numerical methods devoted to reactive interface simulations are presented.
It realizes the principle that the photocurrent collected by p-n junction depends on recombination velocity if the incident light is absorbed close to the reactive interface.
Evaluation of adhesion at both the reactive interface and its unreactive counterpart revealed that the reactive interface was mechanically reinforced by copolymer formation, and typically showed fracture toughness at least twice that of the unreactive interface.
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