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Galvanostatic discharge/charge test showed that the specific capacitance sharply increased from 151.1 to 792.2 F g−1 at 5 A g−1 after 1500 cycles, which was attributed to the oxidation of metallic Ni into ionic Ni2+ forming more reactive sites.
As we know, hierarchical porosity by generating mesopores inside microporous molecular sieve is a feasible approach to reduce the mass transfer resistance of the reactants and construct more reactive sites inside microporous molecular sieve, furthermore to improve the reactivity [16].
And the high specific surface area (~2085 m2 g−1) provides more reactive sites and ensures excellent activity.
Polarized iron particles could provide more reactive sites and increase mass transfer efficiency, thus promoted nitrate reduction and decreased energy consumption.
SiO2 spheres were used as templates for supporting the 3D graphene frameworks to enhance the sensitivity of sensing device through providing more reactive sites.
These satisfactory electrochemical behaviours can be attributed to the hierarchical flower-like architecture, which supply more reactive sites for charge/discharge processes.
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The catalytic mechanism of the ERGO is discussed in detail, the CO functional groups other than the C O functional groups on the surface of ERGO more likely provide reactive sites for those redox couples, leading to a more comprehensive understanding about the catalytic process than previous relevant researches.
The unique nanostructure in this treated substance, as demonstrated in the SEM photograph, provides more surface area and reactive sites for enhanced cell adhesion.
While paracetamol is a very small molecule with few polar sites, the same principle can be applied in reasoning out highly reactive sites in more complex molecules.
In most cases the heteroatoms are the most reactive sites, but in others the carbon atoms are more reactive, as in Al–O and Si B codoped graphene.
A hetero-nanostructure showed flower-like ZnCo2O4 nanosheets which were well dispersed and firmly decorated on nitrogen-doped reduced graphene oxide, as atomic-scale defects such as nitrogen-doped sites and oxygen-functional groups in chemically modified graphene oxide can be more reactive nucleation sites to anchor metallic nanoparticles strongly.
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