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Metal/reinforcement nanolayered composites can effectively balance the strength and toughness.
The results demonstrate that GR-N/TiO2 composites can effectively photodegrade MO, showing an impressive photocatalytic enhancement over pure TiO2.
The porous Al2O3/acrylic resin composites can effectively separate oils and organic solvents with high oil absorption rate and high oil retention capacity.
The passive confinement of externally wrapped fiber-reinforced polymer (FRP) composites can effectively restrain the unstable lateral expansion of confined concrete, hence results in significantly improved strength and ductility.
Their results clearly showed that PEG/ SiO2/MWCNT composites can effectively improve the efficiency of solar energy applications.
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The composite can effectively capture, store and discharge thermal energy, at a constant temperature, without any additional requirements.
3D architecture RGO-MoS2 composite can effectively prevent two-dimensional nanosheets re-stacked and can be applied in electromagnetic wave absorption field.
It has been found that the use of appropriate amount of nano-ZnO/Isopropyl alcohol solvent to prepare a UV resistant nano-ZnO/glass fibre reinforced epoxy (ZGFRE) composite can effectively block the UV transmission with negligible influence on the crystal structure of its resin system.
Appropriate release of antibacterial silanol ions from the composite can effectively inhibit the growth of harmful microbes.
As a result, the electron-accepting and electron-transporting properties of CNTs in TiO2@CNTs composite can effectively hinder electron-hole pair recombination and leave more holes to promote the degradation of MO dyes.
It is concluded that the composites can be effectively used for the potential applications especially in automotive field.
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