Showing 13,181 - 13,200 results of 57,537 for search '(( 2 e decrease ) OR ( 100 ((((we decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 1.26s Refine Results
  1. 13181

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  2. 13182

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  3. 13183

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  4. 13184

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  5. 13185

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  6. 13186

    Structure–Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites by Constantinos C. Stoumpos (1364667)

    Published 2016
    “…All compounds have been identified as medium-to-wide-band-gap semiconductors in the range of <i>E</i><sub>g</sub> = 1.90–2.40 eV, with the band gap progressively decreasing with increased corner-sharing functionality and increased torsion angle in the octahedral connectivity.…”
  7. 13187

    Cation Disorder and Large Tetragonal Supercell Ordering in the Li-Rich Argyrodite Li<sub>7</sub>Zn<sub>0.5</sub>SiS<sub>6</sub> by Bernhard T. Leube (5811647)

    Published 2022
    “…The transition between the ordered <i>I</i>4 and disordered <i>F</i>43<i>m</i> structures is associated with a dramatic decrease in activation energy to 0.34(1) eV above 411 K. …”
  8. 13188

    Cation Disorder and Large Tetragonal Supercell Ordering in the Li-Rich Argyrodite Li<sub>7</sub>Zn<sub>0.5</sub>SiS<sub>6</sub> by Bernhard T. Leube (5811647)

    Published 2022
    “…The transition between the ordered <i>I</i>4 and disordered <i>F</i>43<i>m</i> structures is associated with a dramatic decrease in activation energy to 0.34(1) eV above 411 K. …”
  9. 13189

    Cation Disorder and Large Tetragonal Supercell Ordering in the Li-Rich Argyrodite Li<sub>7</sub>Zn<sub>0.5</sub>SiS<sub>6</sub> by Bernhard T. Leube (5811647)

    Published 2022
    “…The transition between the ordered <i>I</i>4 and disordered <i>F</i>43<i>m</i> structures is associated with a dramatic decrease in activation energy to 0.34(1) eV above 411 K. …”
  10. 13190
  11. 13191
  12. 13192

    A single mutation in the envelope protein modulates flavivirus antigenicity, stability, and pathogenesis by Leslie Goo (3752755)

    Published 2017
    “…Here, we identified a single mutation at residue 198 (T198F) of the West Nile virus (WNV) E protein domain I-II hinge that regulates virus breathing. …”
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  20. 13200