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11661
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11662
Atomistic Insight into Adsorption, Mobility, and Vibration of Water in Ion-Exchanged Zeolite-like Metal−Organic Frameworks
Published 2009“…Because of the high affinity for the ionic framework and nonframework ions, water is strongly adsorbed in rho-ZMOFs with a three-step adsorption mechanism. At low pressures, water is preferentially adsorbed onto Na<sup>+</sup> ions, particularly at site II; with increasing pressure, adsorption occurs near the framework and finally in the large cage. …”
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11663
Atomistic Insight into Adsorption, Mobility, and Vibration of Water in Ion-Exchanged Zeolite-like Metal−Organic Frameworks
Published 2009“…Because of the high affinity for the ionic framework and nonframework ions, water is strongly adsorbed in rho-ZMOFs with a three-step adsorption mechanism. At low pressures, water is preferentially adsorbed onto Na<sup>+</sup> ions, particularly at site II; with increasing pressure, adsorption occurs near the framework and finally in the large cage. …”
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11664
Atomistic Insight into Adsorption, Mobility, and Vibration of Water in Ion-Exchanged Zeolite-like Metal−Organic Frameworks
Published 2009“…Because of the high affinity for the ionic framework and nonframework ions, water is strongly adsorbed in rho-ZMOFs with a three-step adsorption mechanism. At low pressures, water is preferentially adsorbed onto Na<sup>+</sup> ions, particularly at site II; with increasing pressure, adsorption occurs near the framework and finally in the large cage. …”
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11665
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11666
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11667
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11668
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11669
A Practical, Fast, and High-Yielding Aziridination Procedure Using Simple Cu(II) Complexes Containing N-Donor Pyridine-Based Ligands
Published 2005“…<i>Four-coordinate</i> dichlorocopper(II) complexes derived from di(2-pyridyl)methanes or pyridine itself exhibit high catalytic activity in aziridination of regular olefins with PhINTs in weakly coordinating chloroform in the presence of 1−2 equiv of NaBAr<sup>F</sup><sub>4</sub> (BAr<sup>F</sup><sub>4</sub><sup>-</sup> = tetra[3,5-di(trifluoromethyl)phenyl]borate). High yields of aziridines exceeding 90% can be obtained with a 1:1 olefin/PhINTs ratio and 1−5 mol % catalyst loading for such reactive olefins as styrene, tri- and tetramethylethylene. …”
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11670
A Practical, Fast, and High-Yielding Aziridination Procedure Using Simple Cu(II) Complexes Containing N-Donor Pyridine-Based Ligands
Published 2005“…<i>Four-coordinate</i> dichlorocopper(II) complexes derived from di(2-pyridyl)methanes or pyridine itself exhibit high catalytic activity in aziridination of regular olefins with PhINTs in weakly coordinating chloroform in the presence of 1−2 equiv of NaBAr<sup>F</sup><sub>4</sub> (BAr<sup>F</sup><sub>4</sub><sup>-</sup> = tetra[3,5-di(trifluoromethyl)phenyl]borate). High yields of aziridines exceeding 90% can be obtained with a 1:1 olefin/PhINTs ratio and 1−5 mol % catalyst loading for such reactive olefins as styrene, tri- and tetramethylethylene. …”
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11671
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11672
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11673
<i>Igfbp7</i> expression is substantially decreased during involution in the mammary gland.
Published 2014“…<p>(A) To ascertain if expression of <i>Igfbp7</i> correlates with involution, protein extracts were prepared from the Wild Type glands on the lactation day 3 (WT LD3) or involuting WT glands (weaned for 5 days, WT Inv D5) and the expression of <i>Igfbp7</i> protein was examined using Western blots. …”
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11674
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11675
JWH-018 and M1 decreased mouse locomotor activity in a CB1R-dependent manner, similar to Δ<sup>9</sup>-THC.
Published 2013“…<p><b>A.</b> Intraperitoneal (i.p.) administration of 3 mg/kg JWH-018, 10 mg/kg JWH-018 M1, and 30 mg/kg Δ<sup>9</sup>-THC decreased locomotor activity relative to vehicle controls over a 10 h time course, beginning 60 min after injection. …”
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11676
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11677
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11678
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11679
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11680
5-Aza-2’-deoxycytidine in the medial prefrontal cortex regulates alcohol-related behavior and Ntf3-TrkC expression in rats - Fig 4
Published 2017“…<p>(A) Schematic illustrations and representative photomicrographs of the intracranial cannula infusion sites in the mPFC. 5-Aza-dc infusion decreased alcohol intake (B) and alcohol preference (C) in alcohol-exposure rats, corresponding to the reduced blood alcohol levels (F). …”