Department of Organic Chemistry, Gdansk University of Technology, Gdańsk, Poland.
J Sep Sci. 2010 Oct;33(19):2956-64. doi: 10.1002/jssc.201000263.
A novel 1,3-alternate 25,27-bis-[cyanopropyloxy]-26,28-bis-[3-propyloxy]-calix[4]arene-bonded silica gel stationary phase (CalixPrCN) was prepared and its structure was confirmed by ATR-FTIR spectroscopy and elemental analysis. The CalixPrCN phase was characterized in terms of its surface coverage, hydrophobic selectivity, aromatic selectivity, shape selectivity, hydrogen bonding capacity, residue metal content, and silanol activity based on Tanaka, Lindner, and SMR 870 test protocols. The effect of the acetonitrile content on the retention and selectivity of the selected neutral, basic, and acidic solutes was studied. The neutral and acidic analytes exhibited classical RP behavior, in which retention time decreases with increasing acetonitrile content. In contrast, basic analytes showed an increase in retention at low and high percentages of acetonitrile, forming "U-shaped" retention profiles. The new calixarene phase was compared with previously reported 1,3-alternate 25,27-bis-[propyloxy]-26,28-bis-[3-propyloxy]-calix[4]arene stationary phase and commercial cyanopropyl column. The results indicate that the CalixPrCN stationary phase behaves like RP packing; however, inclusion complex formation, dipole-dipole, and π-π interactions seem to be involved in the separation process. The selectivity of this phase was demonstrated in separation of polynuclear aromatic hydrocarbons, non-steroidal anti-inflammatory drugs, and sulfonamides as analytes.
一种新型的 1,3-交替的 25,27-双-[氰丙氧基]-26,28-双-[3-丙氧基]-杯[4]芳烃键合硅胶固定相(CalixPrCN)被制备出来,并通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)和元素分析来确认其结构。CalixPrCN 相的表面覆盖率、疏水性选择性、芳香选择性、形状选择性、氢键能力、残留金属含量和硅醇活性是基于 Tanaka、Lindner 和 SMR 870 测试方案来进行表征的。研究了乙腈含量对所选中性、碱性和酸性溶质保留和选择性的影响。中性和酸性分析物表现出经典的反相保留行为,其中保留时间随乙腈含量的增加而减少。相比之下,碱性分析物在低和高乙腈百分比时表现出保留时间的增加,形成“U 形”保留曲线。将新的杯芳烃相与之前报道的 1,3-交替的 25,27-双-[丙氧基]-26,28-双-[3-丙氧基]-杯[4]芳烃固定相和商业氰丙基柱进行了比较。结果表明,CalixPrCN 固定相的行为类似于反相填充;然而,包合络合、偶极-偶极和π-π相互作用似乎参与了分离过程。该相的选择性在多环芳烃、非甾体抗炎药和磺胺类药物等分析物的分离中得到了证明。