State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, 163 Xianlin Avenue, Nanjing 210023, China.
ACS Appl Mater Interfaces. 2021 May 19;13(19):22970-22977. doi: 10.1021/acsami.1c03985. Epub 2021 May 6.
Use of smaller particle size of packing materials in liquid chromatography leads to faster separation and higher efficiency. This basic law has driven the evolution of packing materials for several generations. However, the use of nanoscale packing materials has been severely hampered by extremely high back pressure. Here, we report a new possibility of solving this issue via introducing novel nanomaterials with highly favorable structures. -Octyl-modified monodispersed dendritic mesoporous silica nanospheres (DMSNs) with an unprecedentedly small diameter (ca. 170 nm) and appropriate pore size (5.6 nm) were controllably synthesized and demonstrated to be a practically applicable packing material offering ultrahigh efficiency. The center-radial centrosymmetric mesopore channels significantly improved the permeability of packed capillaries, enabling column packing and capillary electrochromatographic separation on regular instruments. Due to the unique morphology, very tiny particle size, and highly uniform packing, the packed column exhibited ultrahigh efficiency up to 3 500 000 plates/m. Powerful separation capability was demonstrated with glycan profiling of cancerous and normal cells, which revealed that cancerous cells exhibited characteristic -glycans. Because DMSNs with tunable particle size and mesopores can be controllably prepared, DMSNs hold great potential to be a new record toward the ultimate generation of packing materials for ultraefficient liquid chromatographic separation.
使用更小粒径的填充材料进行液相色谱分析可实现更快的分离速度和更高的效率。这一基本规律推动了填充材料的几代发展。然而,纳米级填充材料的应用受到极高背压的严重阻碍。在此,我们通过引入具有高度有利结构的新型纳米材料,为解决这一问题提供了新的可能性。我们可控合成了具有前所未有的小直径(约 170nm)和适当孔径(5.6nm)的辛基修饰单分散树枝状介孔硅纳米球(DMSN),并证明其是一种实际适用的填充材料,可提供超高效率。中心径向对称介孔通道显著提高了填充毛细管的渗透性,从而能够在常规仪器上进行柱填充和毛细管电色谱分离。由于独特的形态、非常小的粒径和高度均匀的填充,填充柱的效率高达 350 万板/米。通过对癌细胞和正常细胞的聚糖进行分析,证明了该填充柱具有强大的分离能力,结果表明癌细胞具有特征性的-β-聚糖。由于具有可调粒径和介孔的 DMSN 可以可控地制备,因此 DMSN 具有成为超高效液相色谱分离用最终代填充材料的巨大潜力。