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The inserted potassium atoms can significantly improve the electronic conductivity of graphite and K-GICs due to those contributions of extra electrons from the inserted potassium atoms making the Fermi levels shift to blue.
They also compete to improve the electronic interpretation of the processed images.
Highly conductive CNSs (30 40 nm) were adopted to improve the electronic conductivity of LiFePO4.
It is demonstrated that B-dopant can efficiently improve the electronic conductivity of carbon-coating layer.
1.9% carbon was found to form an optimized carbon layer on TiO2 that can improve the electronic conductivity.
This work discusses codoping moderate metal nanoparticles (Ni, Fe) on the ferrite/C composite nanofibers to improve the electronic conductivity.
The Ag nanostructure incorporated PEDOT PSS helps to improve the electronic conductivity and the electrochemical stability of the PANI electrodes.
Besides, the three types of N dopants in NDCN improve the electronic conductivity, as well as superior electrochemical performance.
Interfacial surface treatments have proven to be a highly effective means to improve the electronic properties of these devices, leading to overall gains in efficiencies.
The attachment of Au nanoparticles does not appear to improve the electronic communication between the solution species and the underlying Au electrode surface.
Furthermore, the introduction of non-hydrogenation terminations can substantially improve the electronic transport features of ribbon, such as a appearance of impressive negative differential resistance phenomena.
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