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Herein, imine-based epoxy composites enhanced by surface modified halloysite nanotubes (SiUr@HNTs) were fabricated.
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The present research problem deals with the fabrication and characterization of reinforced unidirectional E-glass fiber/epoxy composites enhanced by MWCNTs and Gnps.
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Substantial research efforts are under way to optimize the production of composites enhanced by the incorporation of nanomaterial fillers such as multiwall carbon nanotubes (MWCNTs).
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The biodegradability of composites enhanced by increasing the starch content and the result was backed by weight loss during burial of the samples in soil for 90 days.
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The formation of CdSe/NH 2 -MIL-101(Cr) nanocomposites enhanced the light absorption intensity, broadened the visible light absorption range, promoted the transfer of photogenerated electrons and inhibited the recombination of photogenerated electron–hole pairs, then effectively improved the photocatalytic hydrogen production performance.
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This paper suggests a fast and robust method for generating finite-element models of the braids, validates the prediction of micro-architecture and electrical conductivity, and demonstrates successful manufacturing of composites enhanced with braided tufts.
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Under visible-light irradiation, the composites enhanced the photocatalytic efficiency of Naproxen (NPX) degradation as the Ag contents increased.
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Great progress has been made in the study of the thermoelectric properties of cement-based composites enhanced with carbon materials, and the addition of carbon materials increases the electrical conductivity of cement-based composites, but easily decreases the Seebeck coefficient.
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Also, the crystallinity of the ultrasound-assisted prepared nanocomposites enhanced by rapid nucleation in this method.
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Various analyses revealed that the dispersion of AgBr in the composites enhanced their optical properties.
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The addition of POM PMo12 to the composites enhanced the visible-light adsorption and redox ability of TiO2.
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The presence of nanobio silver into the nanocomposites enhanced the bactericidal properties demonstrated by slightly larger diameters of growth inhibition zone and lower minimal inhibitory concentrations.
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As the molding temperature and molding time increased, the mechanical properties of the composites enhanced due to the improved impregnation of the fibers, although there was potential matrix degradation.
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∆E and opacity of the nanocomposites enhanced after the amount of ZnO increased.
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The addition of rGOm, xGnP, and graphite into the rubber nanocomposites enhanced the electrical and mechanical properties depending on the amount of fillers and the EB irradiation dosage.
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However, after extrusion process, the tensile strength of composites enhanced with increasing the amount of primary phases.
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The results showed that a higher ratio of fulvic acid in the composites enhanced the immobilization effect on Pb and Cd:the immobilization efficiency (IE) of Pb and Cd increased with the passivation time, and then stabilized.
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The nanocomposites enhanced its antibacterial activity in the presence of visible light compared to dark conditions.
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