Showing 381 - 400 results of 27,040 for search '(( 50 ((nn decrease) OR (a decrease)) ) OR ( 50 ((mg decrease) OR (we decrease)) ))', query time: 0.87s Refine Results
  1. 381

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  2. 382

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  3. 383

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  4. 384

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  5. 385

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  6. 386

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  7. 387

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  8. 388

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  9. 389

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  10. 390

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  11. 391

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  12. 392

    Chloro Half-Sandwich Osmium(II) Complexes:  Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity by Anna F. A. Peacock (1297842)

    Published 2007
    “…Relatively little is known about the kinetics or the pharmacological potential of organometallic complexes of osmium compared to its lighter congeners, iron and ruthenium. We report the synthesis of seven new complexes, [(η<sup>6</sup>-arene)Os(NN)Cl]<sup>+</sup>, containing different bidentate nitrogen (N,N) chelators, and a dichlorido complex, [(η<sup>6</sup>-arene)Os(N)Cl<sub>2</sub>]. …”
  13. 393
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  15. 395
  16. 396
  17. 397

    Robust Operation of Mesoporous Antireflective Coatings under Variable Ambient Conditions by Barry Reid (1559488)

    Published 2018
    “…In this work, we examine the effect of relative humidity on mesoporous ARCs and present a simple method for the preparation of ARCs with robust operation under variable conditions. …”
  18. 398

    FigShare_Data HbO2 JoP 50 (KMG).xlsx by Kayla Garvey (22027559)

    Published 2025
    “…High-altitude mice generally had greater aerobic capacity in hypoxia, in association with higher arterial O<sub>2</sub> saturation and lower P<sub>50</sub> (O<sub>2</sub> pressure at 50% Hb saturation) in most conditions. …”
  19. 399

    An Improved Genome Assembly of Azadirachta indica A. Juss. by Binay Panda (768771)

    Published 2016
    “…The updated genome assembly (v2.0) yielded 3- and 3.5-fold increase in N50 and N75, respectively; 2.6-fold decrease in the total number of scaffolds; 1.25-fold increase in the number of valid transcriptome alignments; 13.4-fold less mis-assembly and 1.85-fold increase in the percentage repeat, over the earlier assembly (v1.0). …”
  20. 400