The opposite effect of temperature on polyethylene glycol-based aqueous biphasic systems versus aqueous biphasic extraction chromatographic resins
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概要
- 論文の詳細を見る
- 2006-11-21
著者
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Griffin S
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Huddleston Jonathan
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Rogers Robin
Department Of Chemistry And Center For Green Manufacturing The University Of Alabama
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Rogers Robin
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Rogers R
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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GRIFFIN Scott
Center for Green Manufacturing and Department of Chemistry, The University of Alabama
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DILIP Meghna
Center for Green Manufacturing and Department of Chemistry, The University of Alabama
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SPEAR Scott
Center for Green Manufacturing and Department of Chemistry, The University of Alabama
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Spear Scott
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Griffin Scott
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Huddleston J
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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Dilip Meghna
Center For Green Manufacturing And Department Of Chemistry The University Of Alabama
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- The opposite effect of temperature on polyethylene glycol-based aqueous biphasic systems versus aqueous biphasic extraction chromatographic resins
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- Application of polyethylene glycol-based aqueous biphasic reactive extraction to the catalytic oxidation of cyclic olefins
- Partitioning of mercury in aqueous biphasic systems and on ABEC^ resins
- Metal ion separations in polyethylene glycol-based aqueous biphasic systems : correlation of partitioning behavior with available thermodynamic hydration data
- Effects of increasing polymer hydrophobicity on distribution ratios of TcO_4 in polyethylene/poly (propylene glycol)-based aqueous biphasic systems
- Partitioning behavior of Group 1 and 2 cations in poly (ethylene glycol)-based aqueous biphasic systems