Sentence examples for electronic repulsion from inspiring English sources

Exact(10)

The improvement resulted from hydrogen's ability to serve as a nanoscale sensor of electronic repulsion in the vicinity of an organic molecule and as a transducer that converts those repulsive forces into variations in the tunneling conductance.

Intramolecular electronic repulsion was used as a strategy to induce a strong conformational bias within the ligand.

Unit cell volume of the SrF2 3Dy decreases when it is covered by CaF2, since some parts of Dy3+ ions are distributed into the shell (CaF2) thereby decreasing both the electronic repulsion between F— ions and unit cell volume.

In this case, the electronic repulsion was eliminated, and the strength of hydrogen bonds (e.g., FF-FF, FF-solvent) increased, because of the enhanced hydrogen bond donor (HBD) ability of NH3+ compared to NH2.

We propose that the strong composition dependence of the elastic modulus of the Ni-rich TiNi can be attributed to the Coulomb static electronic repulsion between the antisite Ni atoms and their surroundings.

The unit cell volume also decreases when SrF2 3Dy is covered with CaF2 which can be explained as, some of Dy3+ ion located near the surface gets distributed into CaF2 leading to decrease in electronic repulsion between F— ions and unit cell volume decreases.

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Crystal field (Dq) and inter-electronic repulsion (B and C) parameters were evaluated.

Electron repulsion integral tensor has ubiquitous applications in electronic structure computations.

Furthermore, the effects of on-site Coulomb repulsion on electronic structure, magnetism, and ferroelectricity were also discussed.

The criteria for TiO2 selection as substrate was based on: (i) its ability to promote electron transfer between ZnO to FTO substrate, (ii) affording high electronic density to the biosensor surface as an electrostatic repulsion layer for the anionic interferents at the biological media, and (iii) enhancement of urea biosensing by the formation of heterojunctions with ZnO.

As most of these energy descriptors are well-known total energy (TE, TE2), torsional energy (TOE), electronic energy (EE), attraction (EN1, EN1c, EN1x) or repulsion (CCR, EE1, EE1c, NN2, NRE) energies, resonance energy (J, MinOH), Gibbs energy (G, ΔGaq, ΔGdiss)—no detailed description is given here.

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