Showing 1,381 - 1,400 results of 103,277 for search '(( i step decrease ) OR ( 5 ((((we decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 1.54s Refine Results
  1. 1381
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  4. 1384

    rVλ6Wil fibrils cause oxidative stress in cardiomyocytes without a decrease in cellular ATP. by Helen P. McWilliams-Koeppen (116503)

    Published 2015
    “…<p>(A) After a 2 h incubation with rVλ6Wil fibrils or monomer, cellular ATP levels, as detected by luminescence (black bars), were not significantly reduced relative to the PBS-treated control. …”
  5. 1385
  6. 1386
  7. 1387

    One-Step Synthesis of a Novel Intrinsically Flame-Retardant Thermoplastic Polyamide 6 Elastomer: Structure, Properties, and Spinnability by Haoyi Hu (18980061)

    Published 2024
    “…In this work, a series of novel intrinsically flame-retardant TPAEs (PA6PTMG-<i>x</i>CEPPAs) containing polyamide 6 as the hard segment, poly(tetramethylene glycol) (PTMG) as the soft segment, and 2-carboxyethyl phenyl phosphonic acid (CEPPA) as a phosphorus-based flame-retardant unit were successfully synthesized through a facile one-step synthetic method. …”
  8. 1388

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  9. 1389

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  10. 1390

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  11. 1391

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  12. 1392

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  13. 1393

    Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States by Weiqiang Wei (19728558)

    Published 2024
    “…However, the operational lifetime of FIrpic-based phosphorescent organic light-emitting diodes (PhOLEDs) remains unsatisfactory. To gain a deeper understanding of the chemical stability of FIrpic in various redox states, we explored its degradation mechanisms in the ground (<i>S</i><sub>0</sub>), one-electron oxidized (Ox.), and one-electron reduced (Re.) states using theoretical methods. …”
  14. 1394
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  18. 1398

    A long-term "memory" of HIF induction in response to chronic mild decreased oxygen after oxygen normalization-5 by Chandrashekhar D Kamat (60176)

    Published 2011
    “…<p><b>Copyright information:</b></p><p>Taken from "A long-term "memory" of HIF induction in response to chronic mild decreased oxygen after oxygen normalization"</p><p>BMC Cardiovascular Disorders 2007;7():4-4.…”
  19. 1399

    Fig 5 Data. by Kevin D. Gaitonde (15411707)

    Published 2023
    “…We observed a marked decrease in nocturnal locomotion of <i>Opn5</i><sup><i>cre</i></sup><i>; Gnas</i><sup><i>fl/fl</i></sup> mice at both 28°C and 22°C, but no overall differences in energy expenditure, respiratory exchange, or food and water consumption. …”
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