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μ decrease » a decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
nn decrease » a decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
n decrease » a decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
_ decrease » _ decreased (Expand Search)
10 μ » 10 _ (Expand Search)
μ decrease » a decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
nn decrease » a decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
n decrease » a decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
_ decrease » _ decreased (Expand Search)
10 μ » 10 _ (Expand Search)
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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13
Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Chloro Half-Sandwich Osmium(II) Complexes: Influence of Chelated N,N-Ligands on Hydrolysis, Guanine Binding, and Cytotoxicity
Published 2007“…The rates of hydrolysis at acidic pH* decreased when the primary amine N-donors (NN = en, <i>t</i><sub>1/2</sub> = 0.6 h at 318 K) are replaced with π-accepting pyridine groups (e.g., NN = phen, <i>t</i><sub>1/2</sub> = 9.5 h at 318 K). …”
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Coarse-grained model leads to collective behavior.
Published 2017“…For cell size, we used the volume exclusion length of 3 μm. (see <a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.1002602#sec010" target="_blank">Materials and methods</a>). …”
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