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However, approaches based on organic matrices offer the possibility to guide mineralization through a more biomimetic route based on tuneable organic inorganic interactions19.
These matrices offer the possibility to concurrently modulate and control the size and extension of the porosity, mechanical properties and the spatial-temporal distribution of multiple bioactive signals.
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With the co-existence of silica textiles and thermoset polymers, such integrated bi-matrices offer the composites with substantial reinforcement in the mechanical properties and thermal stability.
Quantum dot materials, in which Si QDs are embedded in a dielectric matrix, offer the potential to tune the effective band gap, through quantum confinement, and allow fabrication of optimised tandem solar cell devices in one growth run in a thin film process.
Quantum dot materials, in which Si quantum dots (QDs) are embedded in a dielectric matrix, offer the potential to tune the effective band gap, through quantum confinement, and allow fabrication of optimised tandem solar cell devices in one growth run in a thin-film process.
The nanoscale dispersion of silicate layers in the polymer matrix offers the possibility of significant improvements in inherent mechanical properties of polymer matrix.
Reinforcement of fibrous composites by stiff particles embedded in the matrix offers the potential for simple, economical functional grading, enhanced response to mechanical loads, and improved functioning at high temperatures.
Using exhaled breath as a non-invasively collected matrix offers the potential to directly relate substances in ambient air to exhaled concentrations of biological and toxicological relevance.
The LD matrix offers the additional advantage of allowing for conditional analyses - testing the independence of an association signal when several markers are genotyped at the same locus - without the need to access genotype data.
Acellular matrices offer a new approach in the management of abdominal wall defects because of their potential capacity to resist infection and induce a milder inflammatory response, angiogenesis and host cell migration.
Metal matrices offer not only high-temperature resistance but also strength and ductility, or "bendability," which increases toughness.
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