Sentence examples for electronic diffusion from inspiring English sources

Exact(6)

Electronic diffusion on the other hand was improved for larger particle sizes.

Disorder in hydrogenated amorphous silicon leads to short electronic diffusion lengths and poor electronic lifetimes relative to crystalline silicon.

Indeed, water molecules present within the interstitial sites of the PB cubic lattice are necessary for electronic diffusion to occur in Prussian blue thin films [23], and water transfer can compete with cation transfer in the redox process [24].

However, structural defects which exist at the contacts between the TiO2 nanoparticles not only hinder electronic diffusion across TiO2 nanocrystalline films but also act as charge recombination sites [20-22,24,26].

Because of the volatilization of Bi element at high temperature, the conventional solid state method requires critical control of Bi content to obtain stoichiometric Bi-Nb-O compounds; also, the resulting bulk products of several micrometers are harmful to efficient electronic diffusion, which inhibits the research and applications of Bi-Nb-O system photocatalysts.

This work reports a novel method to boost their lithium storage capabilities by using highly-dispersed Co element in the form of nanofilm-like Co2SiO4/SiO2 powder on the surface of reduced graphene oxide (RGO) that promotes the electronic diffusion and accommodates the volume changes.

Similar(54)

Based on an analysis of the impact of varying model parameters on BRR, some effective measures for controlling electronic virus diffusion have been advised.

From the electronic perspective, efficient diffusion of photoexcited charge carriers to the surface with less recombination is a basic requisite of any good photocatalyst.

Three dimensional (3D) nanocomposites are currently considered as promising electrode materials due to their large surface area, reduced electronic and ionic diffusion distances, and synergistic effects.

The unique materials architecture render the vertically-aligned CuO NBs with enhanced electronic and ionic diffusion kinetics, high charge storage (∼779 mC cm−2 at 1 mA cm−2), excellent rate capability and long-term cycling performances.

Benefiting from the novel synthesis strategy and the 3D connect/quasi-connect structures, the as-prepared CuO/copper foam electrode can provide massive active sites for redox reactions, high electronic conductivity, short diffusion pathway for ions and effectively electrolyte penetrating.

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