HPLC Retention Behavior of Poly-Aromatic-Hydrocarbons on Aminopropyl Silica Gels Modified with Cu(II)- and Ni(II)-Phthalocyanine Derivatives in Non-polar Eluent

A comparative study was conducted to elucidate the mechanism underlying the separation of poly-aromatichydrocarbons (PAHs) and related compounds thereof on a column packed with silica gels modified with Ni(II)or Cu(II)-phthalocyanine derivatives (PCS) (Ni- or Cu-PCSD column) and commercially availab...

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Veröffentlicht in:Chemical & Pharmaceutical Bulletin 2004, Vol.52 (1), p.41-46
Hauptverfasser: Hiromichi AKIZAWAa, Yuji KITAMURAa, Minako YAMANEa, Akimasa IWADOa, Junko ODAa, Masaki MIFUNEa, Noriko MOTOHASHIb, Jun HAGINAKAc, Yutaka SAITOa
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Sprache:jpn
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Zusammenfassung:A comparative study was conducted to elucidate the mechanism underlying the separation of poly-aromatichydrocarbons (PAHs) and related compounds thereof on a column packed with silica gels modified with Ni(II)or Cu(II)-phthalocyanine derivatives (PCS) (Ni- or Cu-PCSD column) and commercially available PYE(R) and NPE(R) columns with a non-polar eluent, such as n-hexane. It has been revealed that the dominant interaction responsible to the separation of PAHs on the Cu-PCSD and the PYE(R) columns with n-hexane is the π-π interaction ; however, in the separation of PAHs having 4 rings such as pyrene on the Ni-PCSD column, participation of π-d interaction was indicated. The predominant role of π-π interaction in the separation of PAHs of less than three rings on the Ni-PCSD column was demonstrated using anthracene. All the columns possessed planar recognition ability and were estimated to be potentially useful in the separation and the analysis of PAHs.
ISSN:0009-2363