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Thus, the properties of PCL PG composites could be tailored by controlling the phosphate glass blend composition.
LiFePO4/C composites could be obtained from all synthesis processes.
The functionally gradient FA/β-TCP composites could be used to design implants.
In addition, these sensing composites could be recycled by sulphamic acid.
The composites could be re-dissolved in DMAc, generating slightly turbid solutions.
The clay component of the clay/graphene composites could be leached out to obtain exfoliated graphite.
Therefore, the prepared composites could be a candidate of electrode materials for supercapacitors.
Typically such composites could be coated with a conductive skin on the surface.
These aerogel composites could be an effective and efficient thermal insulation material to be implemented in the construction industry.
Flax/epoxy composites could be comparable to synthetic composites in the aspects of durability performance for civil engineering application.
We found that the thermal conductivity and CTE of the ZrW2O8/Cu composites could be controlled through suitable HPHT sintering.
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