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Shape-Selective Retention of Polycyclic Aromatic Hydrocarbons on Metalloprotoporphyrin-Silica Phases: Effect of Metal Ion Center and Porphyrin Coverage

机译:多环芳烃在金属原卟啉-硅胶相上的形状选择保留:金属离子中心和卟啉覆盖率的影响

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摘要

Various metalloprotoporphyrins (MProP) covalently linked to silica are examined as stationary phases for reversed-phase HPLC separation of polycyclic aromatic hydrocarbons (PAHs). The MProP-silica stationary phases are shown to exhibit extraordinary shape selectivity for planar over nonplanar PAHs, with the selectivity factors for the triphenylene/o-terphenyl solute pair approaching 30 on Cu↓(Ⅱ)ProP-silica phases using 100% acetonitrile as the mobile phase. Shape selectivity and solute retention are highly dependent on the metal ion (bi) within the center of the immobilized protoporphyrin (ProP) structure in accordance with the following sequence: Cu(Ⅱ) > Fe(Ⅲ) > Ni(Ⅱ)> H↓(2)> Zn(Ⅱ) ≈ Cd(Ⅱ). A face-to-face π-π interaction is believed to be the major retention mechanism of PAHs on ProP- and MProP-silica phases, with varying metal ion centers affecting the strength of this interaction. Beyond the influence of the central metal, varying surface coverages of metalloporphyrin also lead to significant changes in observed capacity factors and shape selectivities for PAH solutes. The extremely high shape selectivity for planar vs nonplanar PAHs suggests lira MProP-silicas could be ideal materials for selectively preconcentrating the more toxic planar PAHs from envi-ronmental samples. Preliminary result8 relevant to this application are reported.
机译:共价键合到二氧化硅上的各种金属原卟啉(MProP)被作为固定相进行了检查,用于反相HPLC分离多环芳烃(PAH)。显示MProP硅胶固定相在平面PAHs上对平面PAHs表现出非凡的形状选择性,在以100%乙腈作为Cu↓(Ⅱ)ProP硅胶相上的三亚苯基/邻三苯基溶质对的选择性因子接近30。流动相。形状选择性和溶质保留高度依赖于固定化原卟啉(ProP)结构中心的金属离子(bi),其顺序如下:Cu(Ⅱ)> Fe(Ⅲ)> Ni(Ⅱ)> H↓ (2)> Zn(Ⅱ)≈Cd(Ⅱ)。面对面的π-π相互作用被认为是PAH在ProP-和MProP-二氧化硅相上的主要保留机制,变化的金属离子中心会影响这种相互作用的强度。除了中心金属的影响之外,金属卟啉的不同表面覆盖率还导致所观察到的PAH溶质的容量因子和形状选择性的显着变化。平面和非平面PAH的极高形状选择性表明,Lira MProP二氧化硅可能是从环境样品中选择性预浓缩毒性更大的平面PAH的理想材料。报告了与本申请相关的初步结果。

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