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This is ascribed to the agglomeration of SPION as a result of their mutual magnetic attraction, whereas the formation of brush-type configuration of PEG (due to the high grafting density of 5 chains of PEG per nm2 surface area of SPION and large Flory radius of 4.7 nm) may partly contribute to the increase in hydrodynamic diameter for PEG-SPION.
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The reasons for the significant improvement of the low operation temperatures electrochemical performances can be ascribed to the enhanced conductivity and reduced agglomeration of pristine particles due to the introduction of graphene nanofibers.
While no such agglomeration was noticed on Ni/TiO2 (R) catalyst, it could be ascribed to the strong metal-support interaction.
Such a gradual capacity decay is ascribed to the decrease of the conductivity and active materials of the surface of the anode, due to agglomeration, pulverization, and cracking of the particles and the formation of the SEI film.
Besides, while the shorter SiNWs are more vertically aligned, the longer SiNWs suffer from agglomeration at the top resulting in the formation of large bundles of SiNWs, ascribed to the van der Waals and attractive capillary forces [25, 26].
The peaks observed at 2 (theta) values of 22o, 31o and 32o can be ascribed to the elemental composition in ALLE that are acting as capping and stabilizing agents for bimetallic Pt@Cu nanostructures, thus preventing agglomeration.
This can be ascribed to the following.
The superior performance can be ascribed to the unique electrode.
This can be ascribed to the Mn-improved spillover effect.
The result may be ascribed to the following two reasons.
The other peaks were ascribed to the undesired nonspecific interferents.
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