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point decrease » point increase (Expand Search)
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a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
point decrease » point increase (Expand Search)
non decrease » nn decrease (Expand Search), note decreased (Expand Search), fold decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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32781
Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes
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. …”
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32782
Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes
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. …”
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32783
Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes
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. …”
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32784
Synthetic Control of Pt···Pt Separation and Photophysics of Binuclear Platinum Complexes
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. …”
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32785
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32786
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32787
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32788
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32789
<i>impdh2</i> mediates the circadian control of cell cycle.
Published 2015“…<p>(A) The BrdU staining in 5 dpf larvae represents the daily rhythm of S phase in cell cycle under LD conditions. …”
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32790
Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces
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. …”
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32791
Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces
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. …”
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32792
Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces
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. …”
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32793
Coalescence-Induced Self-Propulsion of Droplets on Superomniphobic Surfaces
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. …”
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32794
Validation of the YAP1 and actin related plasmids expression in the approach II of STUPPIT.
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.…”
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32795
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32796
Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles
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. …”
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32797
Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles
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. …”
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32798
Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles
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. …”
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32799
Sustainable Sea of Internet of Things: Wind Energy Harvesting System for Unmanned Surface Vehicles
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. …”
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32800