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The enhanced photocatalytic activity of F-ZnO-m may be attributed to factors such as large surface area.
The use of nanomaterials not only offers advantages such as large surface area, increased mechanical strength, and effective enzyme loading, but also exhibits high catalytic efficiency [6, 7].
To fabricate PU nanofibrous substrate loaded curcumin, electrospinning method has been used because of its many advantages such as large surface area.
Among carbon materials, graphene has some fascinating features, such as large surface area, high flexibility, excellent conductivity and good chemical/thermal stability [18, 19].
The electrospun micro/nanofibers display a variety of outstanding properties, such as large surface area, high length/diameter ratio, flexible surface functionality, and superior mechanical performance.
Nanofibrous containing curcumin was fabricated by electrospinning process because of many advantages such as large surface area and superior physical properties.
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One-dimensional (1D) nanomaterials have received increasing attention in nanodevices and nanotechnology due to their unique properties, such as large surface-to-volume ratio, nanocurvature effect, and direct pathway for charge transportation [1].
Nanocrystalline semiconductor particles have attracted considerable interest in recent years because of their novel properties, such as large surface-to-volume ratio and the three-dimensional confinement of the electrons [1, 2, 3, 4, 5, 6, 7].
Nanosized TiO2-based photocatalysts have been regarded as the ideal candidates for solar energy conversion because of their peculiar inherent merits, such as large surface-to-volume ratio, fast and long-distance charge transport, and good physicochemical stability.
Graphene is a 2-D carbon nanomaterial with many distinctive properties that are electrochemically beneficial, such as large surface-to-volume ratio, lowered power usage, high conductivity and electron mobility.
Metal oxide nanoparticles (NPs), such as zinc oxide (ZnO), have been found to exhibit interesting properties, such as large surface-to-volume ratio, high surface reaction activity, high catalytic efficiency, and strong adsorption ability [1, 2, 3], that make them potential candidates for various applications.
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