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It is quite challenging to design a deterministic sensing matrix with low coherence.
The blending of polyaniline (PANI) with insulating polymers is an active area of research which has been driven by the possibility to combine the good mechanical properties and processability of the polymer matrix with low electrical resistance.
Solutes can move rapidly down the preferential flow paths with high pore-water velocities, but can be held in the less permeable region of the soil matrix with low pore-water velocities, thereby reducing the efficiency of leaching.
We report on the network characterization of a series of hybrid nanocomposites consisting of integrated anisotropic nanoparticles (NPs) within a polyurea elastomeric matrix with low weight fractions ranging from 0.3 to 1.2 wt%.
Due to the synergism of thin carbon coating and graphene matrix with low fraction on the basis of complementary advantages, C-LiFePO4/graphene exhibitsuperioror high-rate performance and favorable energy density, which with a unique structural and geometrical feature that LiFePO4/C nanorods embedded in a matrix built of interweaved graphene nanosheets.
The block copolymers exhibited microphased structures composed of the poly CP) matrix with low Tg (−30 °C) and the poly(nBA) spherical phase with lower Tg (−50 to −60 °C), as revealed by dynamic mechanical analysis (DMA) and transmission electron microscopy (TEM).
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The use of matrix with "low-grade" properties enhances effectively the impact performance.
We explored the pore structure of shale matrix with low-pressure nitrogen adsorption/desorption isotherms.
Two technological solutions for the preparation of lightweight gypsum composites are analyzed involving low-density foamed gypsum matrix with higher-density aggregates and higher-density matrix with low-density aggregates.
A high energy density input promotes the diffusion of Sn from the grain boundaries to the β-matrix, resulting in an increase in the lattice constants of the β-matrix, with low elastic modulus of the as-fabricated Ti 37Nb 6Sn alloy.
The combination of high strength concrete matrixes with low strength fibers does not seem to be efficient.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com