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The XPS and NH3-TPD studies demonstrated that the defects on the CNTs enhanced the reactivity of the exposed surfaces allowing obtaining a higher degree of oxygen functionalization and more active adsorption sites.
The performance enhancement of Au@CdS/MIL-101 heterostructure can be attributed to the following reasons: (i) the large surface area of MIL-101(Cr) can effectively disperse the Au and CdS nanoparticles, resulting in more active adsorption sites and reaction centers.
It is commonly accepted that mesoporous TiO2 with a large surface area is a superior photocatalyst since a larger surface area provides more active adsorption sites.
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No activity for HCHO oxidation is observed on any supports, and silver particles with some oxygen in bulk were more active for the adsorption and activation of HCHO.
By tuning the pulse duty cycle and current density, the thin TiO2 layer could provide more active sites for adsorption of dye and improve the electrical contact between TiO2 nanoparticles.
Compared with microscale adsorbents, electrospun nanofibers with a higher surface-to-volume ratio can achieve larger specific surface and generate more active sites for adsorption.
It is indicated from the results of our work that the extremely large surface-to-volume ratio and numerous micropores make nanofibers mat a promising high-performance adsorbent material that can achieve a larger specific surface and more active sites for adsorption, compared with microscale adsorbents.
A smaller metal particle is believed that able to provide more active sites for the adsorption of H2, leading to a higher hydrogenolysis activity.
The porous substrate offers more active sites for gas adsorption and subsequent surface reaction leading to good sensitivity.
The SERS enhancements observed in the nanostructured Au films (obtained with 500 mM HCOONa) resulted from the deposition of many Au NPs on the surface, increasing the film surface roughness, which promotes electromagnetic field enhancements, resulting in more active sites for molecule adsorption.
The increased specific surface area and pore volume are beneficial to facilitate the Na+ diffusion and provide more active sites to increase adsorption capacitance and facilitate pseudo-capacitive reactions.
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CEO of Professional Science Editing for Scientists @ prosciediting.com