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On the other hand, the BiPO4/Bi2S3 composites exhibit a mixture of two crystalline phases.
Compared to bare Bi4Ti3O12 and Ag3PO4 nanoparticles, the composites exhibit a significantly enhanced photocatalytic activity.
The ReS2/rGO composites exhibit a hierarchical, interconnected, and porous architecture constructed by nanosheets.
The MIL composites exhibit a very high degree of microstructural design and control.
The DS three-phase composites exhibit a fine and homogeneous script lamellar microstructure.
As a result, Fe Nb Al composites exhibit a good combination of fracture strength and plasticity.
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Au/g-C3N4 composites exhibit an emission at 460 nm and g-C3N4/Ru bpy) g-C3N4/Ru bpym.
Compared to the bare SrTiO3 nanoparticles, the as-prepared SrTiO3-graphene composites exhibit an enhanced photocatalytic activity for the degradation of AO7 under irradiation of UV light.
Compared to bare Bi4Ti3O12 and Ag3PO4 particles, the as-prepared Bi4Ti3O12/Ag3PO4 composites exhibit an enhanced photocatalytic activity toward the degradation of RhB under simulated sunlight irradiation.
It is found that the CCNS-RGO composites exhibit an enhanced capacitive performance as compared with individual CCNS and RGO.
After more than 50 years of development, carbon fiber composites exhibit an order of magnitude higher specific strength as compared to structural metals such as steel.
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