Showing 32,781 - 32,800 results of 107,763 for search '(( 5 ((a decrease) OR (mean decrease)) ) OR ( e ((non decrease) OR (point decrease)) ))', query time: 1.90s Refine Results
  1. 32781

    Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes by Biwu Ma (1280805)

    Published 2005
    “…A new series of luminescent μ-pyrazolate-bridged cyclometalated platinum binuclear complexes having the formula <i>C</i><sup>∧</sup><i>N</i>Pt(μ-<i>pz</i><i>‘</i>)<sub>2</sub>Pt<i>C</i><sup>∧</sup><i>N</i> (<i>C</i><sup>∧</sup><i>N</i> = 2-(2,4-difluorophenyl)pyridyl, <i>pz</i><i>‘</i> = pyrazolate for <b>1</b>, 3,5-dimethylpyrazolate for <b>2</b>, 3-methyl-5-<i>tert</i>-butylpyrazolate for <b>3</b>, and 3,5-bis(<i>tert</i>-butyl)pyrazolate for <b>4</b>) have been synthesized and characterized. …”
  2. 32782

    Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes by Biwu Ma (1280805)

    Published 2005
    “…A new series of luminescent μ-pyrazolate-bridged cyclometalated platinum binuclear complexes having the formula <i>C</i><sup>∧</sup><i>N</i>Pt(μ-<i>pz</i><i>‘</i>)<sub>2</sub>Pt<i>C</i><sup>∧</sup><i>N</i> (<i>C</i><sup>∧</sup><i>N</i> = 2-(2,4-difluorophenyl)pyridyl, <i>pz</i><i>‘</i> = pyrazolate for <b>1</b>, 3,5-dimethylpyrazolate for <b>2</b>, 3-methyl-5-<i>tert</i>-butylpyrazolate for <b>3</b>, and 3,5-bis(<i>tert</i>-butyl)pyrazolate for <b>4</b>) have been synthesized and characterized. …”
  3. 32783

    Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes by Biwu Ma (1280805)

    Published 2005
    “…A new series of luminescent μ-pyrazolate-bridged cyclometalated platinum binuclear complexes having the formula <i>C</i><sup>∧</sup><i>N</i>Pt(μ-<i>pz</i><i>‘</i>)<sub>2</sub>Pt<i>C</i><sup>∧</sup><i>N</i> (<i>C</i><sup>∧</sup><i>N</i> = 2-(2,4-difluorophenyl)pyridyl, <i>pz</i><i>‘</i> = pyrazolate for <b>1</b>, 3,5-dimethylpyrazolate for <b>2</b>, 3-methyl-5-<i>tert</i>-butylpyrazolate for <b>3</b>, and 3,5-bis(<i>tert</i>-butyl)pyrazolate for <b>4</b>) have been synthesized and characterized. …”
  4. 32784

    Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes by Biwu Ma (1280805)

    Published 2005
    “…A new series of luminescent μ-pyrazolate-bridged cyclometalated platinum binuclear complexes having the formula <i>C</i><sup>∧</sup><i>N</i>Pt(μ-<i>pz</i><i>‘</i>)<sub>2</sub>Pt<i>C</i><sup>∧</sup><i>N</i> (<i>C</i><sup>∧</sup><i>N</i> = 2-(2,4-difluorophenyl)pyridyl, <i>pz</i><i>‘</i> = pyrazolate for <b>1</b>, 3,5-dimethylpyrazolate for <b>2</b>, 3-methyl-5-<i>tert</i>-butylpyrazolate for <b>3</b>, and 3,5-bis(<i>tert</i>-butyl)pyrazolate for <b>4</b>) have been synthesized and characterized. …”
  5. 32785
  6. 32786
  7. 32787
  8. 32788
  9. 32789

    <i>impdh2</i> mediates the circadian control of cell cycle. by Ying Li (38224)

    Published 2015
    “…<p>(A) The BrdU staining in 5 dpf larvae represents the daily rhythm of S phase in cell cycle under LD conditions. …”
  10. 32790

    Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces by Hamed Vahabi (2879192)

    Published 2017
    “…Within the visco-capillary regime, decreasing the droplet radius <i>R</i><sub>0</sub> results in a more rapid decrease in the nondimensional jumping velocity <i>V</i><sub>j</sub><sup>*</sup> compared to increasing the viscosity μ. …”
  11. 32791

    Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces by Hamed Vahabi (2879192)

    Published 2017
    “…Within the visco-capillary regime, decreasing the droplet radius <i>R</i><sub>0</sub> results in a more rapid decrease in the nondimensional jumping velocity <i>V</i><sub>j</sub><sup>*</sup> compared to increasing the viscosity μ. …”
  12. 32792

    Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces by Hamed Vahabi (2879192)

    Published 2017
    “…Within the visco-capillary regime, decreasing the droplet radius <i>R</i><sub>0</sub> results in a more rapid decrease in the nondimensional jumping velocity <i>V</i><sub>j</sub><sup>*</sup> compared to increasing the viscosity μ. …”
  13. 32793

    Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces by Hamed Vahabi (2879192)

    Published 2017
    “…Within the visco-capillary regime, decreasing the droplet radius <i>R</i><sub>0</sub> results in a more rapid decrease in the nondimensional jumping velocity <i>V</i><sub>j</sub><sup>*</sup> compared to increasing the viscosity μ. …”
  14. 32794

    Validation of the YAP1 and actin related plasmids expression in the approach II of STUPPIT. by Lin Xie (136792)

    Published 2025
    “…Around 135 proteins among the approximately 700 proteins showed decreased abundance (with a fold change >1.5, calculated as control/AMOT-KD) upon AMOT knockdown.…”
  15. 32795
  16. 32796

    Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles by Hao Cao (2248066)

    Published 2024
    “…A prototype is manufactured, and the test result shows that it can charge a 2200 μF supercapacitor to 6.2 V within 120 s, which indicates that it has a great potential to achieve the self-powered low-power sensors. …”
  17. 32797

    Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles by Hao Cao (2248066)

    Published 2024
    “…A prototype is manufactured, and the test result shows that it can charge a 2200 μF supercapacitor to 6.2 V within 120 s, which indicates that it has a great potential to achieve the self-powered low-power sensors. …”
  18. 32798

    Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles by Hao Cao (2248066)

    Published 2024
    “…A prototype is manufactured, and the test result shows that it can charge a 2200 μF supercapacitor to 6.2 V within 120 s, which indicates that it has a great potential to achieve the self-powered low-power sensors. …”
  19. 32799

    Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles by Hao Cao (2248066)

    Published 2024
    “…A prototype is manufactured, and the test result shows that it can charge a 2200 μF supercapacitor to 6.2 V within 120 s, which indicates that it has a great potential to achieve the self-powered low-power sensors. …”
  20. 32800