Showing 12,801 - 12,820 results of 106,497 for search '(( 50 ((we decrease) OR (mean decrease)) ) OR ( 5 ((teer decrease) OR (a decrease)) ))', query time: 2.07s Refine Results
  1. 12801
  2. 12802

    Video_5_Pericardial Injection of Kainic Acid Induces a Chronic Epileptic State in Larval Zebrafish.MP4 by Lise Heylen (11561266)

    Published 2021
    “…Three out of five AEDs tested rescued LFP abnormalities but did not affect the seizure-like behavior. …”
  3. 12803

    Supplementary Material for: NOD-Like Receptor Family Pyrin Domain-Containing 3 Inflammasome Activation Exacerbates 5-Fluorouracil-Induced Small Intestinal Mucositis via Interleukin... by Nakata A. (8132169)

    Published 2019
    “…<b><i>Results:</i></b> Mice treated with 5-FU developed small intestinal mucositis with diarrhea and body weight loss, characterized by a decrease in villus height and the villus height-to-crypt depth ratio. …”
  4. 12804
  5. 12805

    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  6. 12806

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  7. 12807
  8. 12808

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  9. 12809

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  10. 12810

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  11. 12811
  12. 12812
  13. 12813
  14. 12814

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  15. 12815

    High Stability, Piezoelectric Response, and Promising Photocatalytic Activity on the New Pentagonal CGeP<sub>4</sub> Monolayer by José A. S. Laranjeira (18870824)

    Published 2024
    “…Under compressive strain, the band gap decreases almost linearly to 2.65 eV at −8% strain and then drops sharply to 0.97 eV, an ∼69% variation. …”
  16. 12816

    Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles by Fahidat A. Gbadamosi (22123930)

    Published 2025
    “…This is attributed to efficient CT observed in spectroscopic analyses and is consistent with the computed small HOMO–LUMO gap (2.92 eV) in a model of the host–guest system. <b>1</b>(MN)<sub>0.39</sub> and <b>1</b>(BTD)<sub>0.5</sub> demonstrated moderate conductivities explained by the interplay of electronic coupling, reorganization energy, and energy gap. …”
  17. 12817
  18. 12818
  19. 12819
  20. 12820