Tarigh Ghazale Daneshvar, Shemirani Farzaneh
Department of Analytical Chemistry, University College of Science, University of Tehran, P.O. Box 14155-6455, Tehran, Iran.
Talanta. 2015 Nov 1;144:899-907. doi: 10.1016/j.talanta.2015.07.035. Epub 2015 Jul 14.
L-Threonine (L-thr) as a general chiral selector anchored on the surface of magnetic multi-wall carbon nanotube (MMWCNT) was prepared using an in situ electrostatic adsorption and studied as a new magnetically chiral selector for the separation of chiral DL-mandelic acid (DL-MA) as a model sample. By varying the pH, DL-MA was adsorbed on the surface of magnetic chiral selector through hydrogen bonds. It is recognized that MMWCNT with chiral ligands on its surface simultaneously possesses both magnetic property and direct chiral recognition ability. The successful immobilization of L-thr onto the surface of MMWCNT was confirmed by infrared spectra (FT-IR), X-ray diffraction patterns (XRD) and transmission electron microscopy (TEM). The FT-IR and mass spectra of supernatant and elution solutions also confirmed the immobilization of L-thr onto the surface of MMWCNT. The analysis results of specific rotation, HPLC and ultraviolet-visible spectroscopy reveal that the L-thr-MMWCNT show stronger complexation of (+)-enantiomer than (-)-enantiomer. The functional magnetic nanotubes were easily separated from the racemic solution using an external magnetic field which demonstrated its feasibility of recycling the adsorbent. All processes including in situ immobilization, enantioseparation (enantioenrichment) and magnetic separation were done by single process in a short time (only 10min).
通过原位静电吸附制备了一种固定在磁性多壁碳纳米管(MMWCNT)表面的通用手性选择剂L-苏氨酸(L-thr),并将其作为一种新型磁性手性选择剂用于分离手性DL-扁桃酸(DL-MA)作为模型样品进行了研究。通过改变pH值,DL-MA通过氢键吸附在磁性手性选择剂表面。人们认识到,表面带有手性配体的MMWCNT同时具有磁性和直接手性识别能力。通过红外光谱(FT-IR)、X射线衍射图谱(XRD)和透射电子显微镜(TEM)证实了L-thr成功固定在MMWCNT表面。上清液和洗脱液的FT-IR和质谱也证实了L-thr固定在MMWCNT表面。比旋光度、高效液相色谱和紫外可见光谱的分析结果表明,L-thr-MMWCNT对(+)-对映体的络合作用比对(-)-对映体更强。使用外部磁场可轻松从外消旋溶液中分离出功能化磁性纳米管,这证明了其回收吸附剂的可行性。包括原位固定、对映体分离(对映体富集)和磁性分离在内的所有过程都可以在短时间内(仅10分钟)通过单一过程完成。