The Experts below are selected from a list of 141 Experts worldwide ranked by ideXlab platform
Ji-ho Yoon - One of the best experts on this subject based on the ideXlab platform.
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clathrate phase equilibria for the water Deuterium Oxide carbon diOxide and water Deuterium Oxide chlorodifluoromethane r22 systems
Journal of Chemical & Engineering Data, 1996Co-Authors: Moonkyoon Chun, Ji-ho YoonAbstract:Clathrate phase equilibria for two ternary water + Deuterium Oxide + carbon diOxide and water + Deuterium Oxide + chlorodifluoromethane (R22) systems were measured at several different mass % of water and Deuterium Oxide mixtures. Equilibrium dissociation pressures of these two ternary systems at the three-phase (clathrate−liquid−vapor) boundaries range (1.43 to 4.86) MPa and (0.141 to 0.886) MPa, respectively. The temperature range occupied by the three-phase boundary of the water + Deuterium Oxide + R22 system is a little larger than that of the water + Deuterium Oxide + carbon diOxide system. The dissociation pressures at the quadruple points were found to steadily increase with Deuterium Oxide composition.
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Clathrate Phase Equilibria for the Water + Deuterium Oxide + Carbon DiOxide and Water + Deuterium Oxide + Chlorodifluoromethane (R22) Systems
Journal of Chemical & Engineering Data, 1996Co-Authors: Moonkyoon Chun, Ji-ho YoonAbstract:Clathrate phase equilibria for two ternary water + Deuterium Oxide + carbon diOxide and water + Deuterium Oxide + chlorodifluoromethane (R22) systems were measured at several different mass % of water and Deuterium Oxide mixtures. Equilibrium dissociation pressures of these two ternary systems at the three-phase (clathrate−liquid−vapor) boundaries range (1.43 to 4.86) MPa and (0.141 to 0.886) MPa, respectively. The temperature range occupied by the three-phase boundary of the water + Deuterium Oxide + R22 system is a little larger than that of the water + Deuterium Oxide + carbon diOxide system. The dissociation pressures at the quadruple points were found to steadily increase with Deuterium Oxide composition.
Moonkyoon Chun - One of the best experts on this subject based on the ideXlab platform.
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clathrate phase equilibria for the water Deuterium Oxide carbon diOxide and water Deuterium Oxide chlorodifluoromethane r22 systems
Journal of Chemical & Engineering Data, 1996Co-Authors: Moonkyoon Chun, Ji-ho YoonAbstract:Clathrate phase equilibria for two ternary water + Deuterium Oxide + carbon diOxide and water + Deuterium Oxide + chlorodifluoromethane (R22) systems were measured at several different mass % of water and Deuterium Oxide mixtures. Equilibrium dissociation pressures of these two ternary systems at the three-phase (clathrate−liquid−vapor) boundaries range (1.43 to 4.86) MPa and (0.141 to 0.886) MPa, respectively. The temperature range occupied by the three-phase boundary of the water + Deuterium Oxide + R22 system is a little larger than that of the water + Deuterium Oxide + carbon diOxide system. The dissociation pressures at the quadruple points were found to steadily increase with Deuterium Oxide composition.
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Clathrate Phase Equilibria for the Water + Deuterium Oxide + Carbon DiOxide and Water + Deuterium Oxide + Chlorodifluoromethane (R22) Systems
Journal of Chemical & Engineering Data, 1996Co-Authors: Moonkyoon Chun, Ji-ho YoonAbstract:Clathrate phase equilibria for two ternary water + Deuterium Oxide + carbon diOxide and water + Deuterium Oxide + chlorodifluoromethane (R22) systems were measured at several different mass % of water and Deuterium Oxide mixtures. Equilibrium dissociation pressures of these two ternary systems at the three-phase (clathrate−liquid−vapor) boundaries range (1.43 to 4.86) MPa and (0.141 to 0.886) MPa, respectively. The temperature range occupied by the three-phase boundary of the water + Deuterium Oxide + R22 system is a little larger than that of the water + Deuterium Oxide + carbon diOxide system. The dissociation pressures at the quadruple points were found to steadily increase with Deuterium Oxide composition.
Burnaby Munson - One of the best experts on this subject based on the ideXlab platform.
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The use of Deuterium Oxide as a mobile phase for structural elucidation by HPLC/UV/ESI/MS
Analytical Chemistry, 2000Co-Authors: Mark A Olsen, Paul G Cummings, Brian M Wagner, Gordon R Nicol, Sonya Kennedy-gabb, Burnaby MunsonAbstract:The use of Deuterium Oxide as a mobile phase in the routine analysis of pharmaceutical compounds was investigated. The Deuterium exchange of labile hydrogen atoms aids in structural confirmation and elucidation of unknown impurities and degradation products. Although Deuterium Oxide as a mobile phase does in some cases change the retention times, the changes in retention times do not interfere with the analysis. A study of the high-performance liquid chromatography system shows that equilibration times for the Deuterium-containing mobile phases are similar to equilibration times with changes of other mobile phases. The use of this technique in the analysis of pharmaceutical compounds and other small molecules is presented.
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the use of Deuterium Oxide as a mobile phase for structural elucidation by hplc uv esi ms
Analytical Chemistry, 2000Co-Authors: Mark A Olsen, Paul G Cummings, Sonya Kennedygabb, Brian M Wagner, Gordon R Nicol, Burnaby MunsonAbstract:The use of Deuterium Oxide as a mobile phase in the routine analysis of pharmaceutical compounds was investigated. The Deuterium exchange of labile hydrogen atoms aids in structural confirmation and elucidation of unknown impurities and degradation products. Although Deuterium Oxide as a mobile phase does in some cases change the retention times, the changes in retention times do not interfere with the analysis. A study of the high-performance liquid chromatography system shows that equilibration times for the Deuterium-containing mobile phases are similar to equilibration times with changes of other mobile phases. The use of this technique in the analysis of pharmaceutical compounds and other small molecules is presented.
Mark A Olsen - One of the best experts on this subject based on the ideXlab platform.
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The use of Deuterium Oxide as a mobile phase for structural elucidation by HPLC/UV/ESI/MS
Analytical Chemistry, 2000Co-Authors: Mark A Olsen, Paul G Cummings, Brian M Wagner, Gordon R Nicol, Sonya Kennedy-gabb, Burnaby MunsonAbstract:The use of Deuterium Oxide as a mobile phase in the routine analysis of pharmaceutical compounds was investigated. The Deuterium exchange of labile hydrogen atoms aids in structural confirmation and elucidation of unknown impurities and degradation products. Although Deuterium Oxide as a mobile phase does in some cases change the retention times, the changes in retention times do not interfere with the analysis. A study of the high-performance liquid chromatography system shows that equilibration times for the Deuterium-containing mobile phases are similar to equilibration times with changes of other mobile phases. The use of this technique in the analysis of pharmaceutical compounds and other small molecules is presented.
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the use of Deuterium Oxide as a mobile phase for structural elucidation by hplc uv esi ms
Analytical Chemistry, 2000Co-Authors: Mark A Olsen, Paul G Cummings, Sonya Kennedygabb, Brian M Wagner, Gordon R Nicol, Burnaby MunsonAbstract:The use of Deuterium Oxide as a mobile phase in the routine analysis of pharmaceutical compounds was investigated. The Deuterium exchange of labile hydrogen atoms aids in structural confirmation and elucidation of unknown impurities and degradation products. Although Deuterium Oxide as a mobile phase does in some cases change the retention times, the changes in retention times do not interfere with the analysis. A study of the high-performance liquid chromatography system shows that equilibration times for the Deuterium-containing mobile phases are similar to equilibration times with changes of other mobile phases. The use of this technique in the analysis of pharmaceutical compounds and other small molecules is presented.
Kathrin Spendier - One of the best experts on this subject based on the ideXlab platform.
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Effects of Deuterium Oxide on cell growth and vesicle speed in RBL-2H3 cells
PeerJ, 2014Co-Authors: Roshni S. Kalkur, Andrew C. Ballast, Ashley R. Triplett, Kathrin SpendierAbstract:For the first time we show the effects of Deuterium Oxide on cell growth and vesicle transport in rat basophilic leukemia (RBL-2H3) cells. RBL-2H3 cells cultured with 15 moles/L Deuterium showed decreased cell growth which was attributed to cells not doubling their DNA content. Experimental observations also showed an increase in vesicle speed for cells cultured in Deuterium Oxide. This increase in vesicle speed was not observed in Deuterium Oxide cultures treated with a microtubule-destabilizing drug, suggesting that Deuterium Oxide affects microtubule-dependent vesicle transport.
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Effects of Deuterium Oxide on cell growth and vesicle speed in RBL-2H3 cells
2014Co-Authors: Roshni S. Kalkur, Andrew C. Ballast, Ashley R. Triplett, Kathrin SpendierAbstract:For the first time we show the effects of Deuterium Oxide on the cell growth and vesicle transport in rat basophilic leukemia (RBL-2H3) cells. RBL-2H3 cells cultured with 15 moles/L Deuterium showed decreased cell growth which was attributed to cells not doubling their DNA content. Experimental observations also showed an increase in vesicle speed for cells cultured in Deuterium Oxide. This increase in vesicle speed was not observed in Deuterium Oxide cultures treated with a microtubule-destabilizing drug suggesting that Deuterium Oxide affects microtubule-dependent vesicle transport.
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Effects of Deuterium Oxide on Cell Cycle and Vesicle Speed in RBL-2H3 Cells
2014Co-Authors: Roshni S. Kalkur, Andrew C. Ballast, Ashley R. Triplett, Kathrin SpendierAbstract:For the first time we show the effects of Deuterium Oxide on the cell cycle and vesicle transport in rat basophilic leukemia (RBL-2H3) cells. RBL-2H3 cultured with 15 moles/L Deuterium Oxide were observed to halt near the G2-M-phase of the cell cycle. Experimental observations also showed an increase in vesicle speed. This increase in vesicle speed was not observed in cultures treated with a microtubule-destabilizing drug suggesting that Deuterium Oxide affects microtubule-dependent vesicle transport.