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Moreover, the microporosity is slightly reduced for composites compared to the initial silica.
The enhanced generation of · OH radicals is observed over the irradiated SrTiO3-graphene composites compared to the bare SrTiO3 nanoparticles.
The values of adsorption capacity of chitosan-clinoptilolite and chitosan-saponite composites compared to pure minerals presented in Table 5.
Additionally, an increase in thermal stability was observed for the composites compared to PE matrix.
A significant increase was observed for lignin-treated composites compared to untreated composites.
Remarkable improvements in mechanical property were achieved with compatibilized composites compared to the virgin composites of PHBV/PBAT/switchgrass.
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Both elastic modulus and ultimate strength increased for the composites comparing to the neat matrices.
Also, as can be seen in Table 2, the incorporation of the GO/rGO fillers into the rubber matrix increased the cure rate index (CRI), especially for the composites compare to the gums.
The flux pinning force and the critical current densities increase by an order of magnitude for nano-composites compared to Y Ba Cu O fabricated without nano-scale inclusions, confirming their potential for improved current carrying performance and for use in high field engineering applications.
Moreover, strong IR absorption was observed for CuS-coated CuSCN composite compared to neat CuS (absence of THT) or CuSCN.
This indicates some decrease in thermal stability of sodium alginate in the composite compared to sodium alginate alone.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com