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Despite superior properties of carbon nanotubes (CNTs), physical properties of the CNT/epoxy composites are not improved significantly because interfacial bonding between the CNTs and the polymer matrix is weak.
At low concentrations, this dependence for PVDF matrix is weak.
The correlation between two different columns of the sampling matrix is weak, i.e., Φ k T Φ k ≫ Φ k T Φ k ′ (k ′ ≠ k), which satisfies the basic RIP condition for compressive sampling[6].
It was reported that an as-prepared collagen matrix is weak and unstable for long-term cell culture and thus is not a desirable scaffold for tissue engineering.
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In liquid nitrogen or at room temperature, the interfacial adhesion between PMMA grafted imogolite and the matrix is weaker, while at 90 °C, is stronger than the cohesion of the PVC matrix.
They are moisture sensitive and their bonding with polymer matrices is weak.
Immobilization techniques are usually very easy to apply, but the bonding of the biocatalyst to the surface of the matrix is relatively weak.
In the HFB, the CWDD nature of the DM matrix is quite weak as α ( d ) increases with frequency and loop length.
Due to the significant difference between matrix and fractures, if imbibition is weak and no stimulation method is taken, oil in the matrix is hardly to be recovered and the reservoir will suffer a big recovery loss.
However, the matrix of eutectic Al-Ni is weak.
SEM observation of the fracture surfaces and the fractured films reveals that the interfacial adhesion between PMMA grafted imogolite and the matrix may be weak or strong with respect to the cohesive energy of the poly vinyl chloride) (PVC) matrix, depending on the environmental temperature.
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CEO of Professional Science Editing for Scientists @ prosciediting.com