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Polycarbonate (PC) and poly(lactic acid) (PLA) were used to create a blend which was used to as a matrix for high performance glass fiber composites.
This kind of cyano-terminated poly phthalazinone ether amide) may be a good candidate as matrix for high performance polymeric materials.
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The morphologies of various diglycidyl ethers of 4,4′-dihydroxy-α-methylstilbene-based liquid crystalline epoxy (LCE) formulations have been studied as matrices for high performance composites.
Single-walled carbon nanotubes (SWNT) presents outstanding mechanical properties and therefore are considered very promising reinforcing materials associated to polymeric matrices for high performance applications.
Unsaturated polyester resins have been used extensively as a matrix for high-performance fiber-reinforced polymer composites, and they can be synthesized from virgin material or from recycled PET (Lu and Kim 2001).
LARCTM-ITPI, an isomeric variation of the better known LARCTM-TPI and based on 4,4′-isophthaloyldiphthalic anhydride and 1,3-phenylenediamine, was evaluated as a matrix for high-performance composites.
The results illustrate that the high rate capability and long term cycling stability of sulfur cathode can be enhanced significantly by encapsulating sulfur into the highly ordered nitrogen-rich mesoporous carbon nanostructure, and the HNMC nanostructure would be a promising carbon matrix for high-performance lithium sulfur batteries.
Active sulfur is encapsulated into the MWCNT@Meso-C matrix prepared via carbonizing MWCNT@MOF-5 polyhedrons for high performance lithium sulfur battery.
Active sulfur is encapsulated into the GO@Meso-C matrix prepared via carbonize GO@MOF-5 polyhedrons for high performance lithium sulfur battery.
A synergistic electroless Ag plating using binary reductants of NaBH4 and glucose is demonstrated to fabricate high conducting silver-coated glass microsphere composite particles (GM@AgCPs) with ultralow Ag content (WAg) of 5.1 wt% for high performance conducting polymer-matrix composites (CPMCs).
The cyclic arylene disulfide) oligomers could be used potentially as high-temperature heating-melt adhesives, coatings, and sealants, as well as matrices for high-performance composites and nanocomposites.
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