Lämmerhofer Michael, Richter Martin, Wu Junyan, Nogueira Raquel, Bicker Wolfgang, Lindner Wolfgang
Christian Doppler Laboratory for Molecular Recognition Materials, Department of Analytical Chemistry and Food Chemistry, University of Vienna, Vienna, Austria.
J Sep Sci. 2008 Aug;31(14):2572-88. doi: 10.1002/jssc.200800178.
A set of particulate silica-supported mixed-mode RP/weak anion-exchangers (RP/WAX) (obtained by bonding of N-undecenoylated 3-aminoquinuclidine, 3-aminotropane and 2-dimethylaminoethylamine as well as of N-butenoyl-(2S,4S,5R)-2-aminomethyl-5-[(2-octylthio)ethyl]-quinuclidine to thiol-modified silica) were chromatographically characterized in comparison to selected commercially available columns using two distinct isocratic elution modes, viz. an aqueous-rich RP-type elution mode (with 40% ACN and 60% buffer) as well as an organic solvent-rich hydrophilic interaction chromatography (HILIC)-type elution mode (95 and 90% ACN). The mixed-mode RP/WAX phases showed multimodal applicability, unlike a polar embedded RP material (Synergi Fusion RP), amino phases (Luna NH(2), BioBasic AX) or typical HILIC packings (ZIC-HILIC, TSKGel Amide-80). Principal component analysis (PCA) of the RP test data confirmed that the in-house developed RP/WAX columns as well as the Acclaim Mixed-Mode WAX-1 phase resemble each other in their chromatographic characteristics having slightly lower hydrophobic selectivity (alpha(CH2) of 1.5) than the tested Synergi Fusion RP (alpha(CH2) approximately 1.8). In contrast, a decrease in mixed-mode character due to lowered ion-exchange capacity and concomitantly increased RP-like behavior could be identified for other mixed-mode phases in the order of Obelisc R > Primesep B2 > Uptisphere MM3. PCA on HILIC data revealed that the RP/WAX phases behave dissimilar to TSKGel Amide-80, ZIC-HILIC and polysulfoethyl A under the chosen elution conditions. Hence, they may be regarded as complementary to these commercial stationary phases with applicability profiles for hydrophilic but also hydrophobic solutes.
通过将N-十一碳烯酰化的3-氨基奎宁环、3-氨基托烷、2-二甲基氨基乙胺以及N-丁烯酰基-(2S,4S,5R)-2-氨基甲基-5-[(2-辛硫基)乙基]-奎宁环键合到硫醇改性的硅胶上,得到了一组颗粒状硅胶负载的混合模式反相/弱阴离子交换剂(RP/WAX)。与选定的市售色谱柱相比,使用两种不同的等度洗脱模式对其进行了色谱表征,即富含水的反相型洗脱模式(含40%乙腈和60%缓冲液)以及富含有机溶剂的亲水相互作用色谱(HILIC)型洗脱模式(95%和90%乙腈)。与极性嵌入式反相材料(Synergi Fusion RP)、氨基相(Luna NH₂、BioBasic AX)或典型的HILIC填料(ZIC-HILIC、TSKGel Amide-80)不同,混合模式RP/WAX相显示出多模式适用性。反相测试数据的主成分分析(PCA)证实,内部开发的RP/WAX色谱柱以及Acclaim混合模式WAX-1相在色谱特性上彼此相似,其疏水选择性(α(CH₂)为1.5)略低于测试的Synergi Fusion RP(α(CH₂)约为1.8)。相比之下,对于其他混合模式相,可确定其混合模式特征因离子交换容量降低而减少,同时反相样行为相应增加,顺序为Obelisc R > Primesep B2 > Uptisphere MM3。HILIC数据的PCA显示,在选定的洗脱条件下,RP/WAX相的行为与TSKGel Amide-80、ZIC-HILIC和聚磺乙基A不同。因此,它们可被视为这些商业固定相的补充,对亲水性和疏水性溶质均有适用范围。