Sentence examples for large unique surface area from inspiring English sources

Exact(1)

High conductivity and large unique surface area extremely enhanced the charge transfer efficiency and the growth of bacterial biofilm on the electrode surface in MFC.

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Because of the strong electrostatic interaction and unique large surface area of both sides of GO, lysozyme can be adsorbed onto its surfaces, increasing the size of the assemblies.

The excellent electrochemical performance was attributed to the unique morphology of MoS2 nanosheets, which possessed large specific surface area, unique 2D nanostructures and low equivalent series resistance.

Functionalized dendrimer-like hybrid silica nanoparticles are attractive nanocarriers for the advanced delivery of various sized drugs and genes simultaneously because these nanoparticles have hierarchical pores, unique structure, large surface area, and excellent biocompability [64].

It is worth mentioning that the yolk shell architecture is a promising candidate for developing drug loading systems compared with the core shell structure, owing to the unique cavity, large surface area and excellent loading capacity [31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41].

Such outstanding electrochemical performance can be endorsed to the large electroactive surface area, unique porous architecture, highly conductive networks, and synergistic interaction between N-Co-CNTs and nitrogen doped graphene (NG) in the novel 3D nanocomposite.

Magnetic iron oxide nanoparticles have been used in various fields owing to their unique properties including large specific surface area and simple separation with magnetic fields.

Hetero atom doped graphene - metal nanoparticle hybrids have received increasing attention owing to their unique electronic properties, large specific surface area, very high conductivity and more electronic interactions.

The enhanced electrochemical performance of hollow MoS2 MACCs could be attributed to their unique hollow structure, large specific surface area, the increased interlayer-distance and the synergistic effects between hollow MoS2 microspheres and amorphous carbon.

The higher activity of the amorphous alloys could be attributed to the large active surface area, the unique amorphous structure together with the suitable structural parameters, and the electron donation of the alloying B to the metallic Ni or Co.

The enhanced photocatalytic activities can be explained by its unique morphology, larger surface area, and smaller crystallite.

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