| Literature DB >> 29426717 |
Qishu Qu1, Yang Si2, Han Xuan3, Kehua Zhang3, Xiaoming Chen3, Yi Ding3, Shaojie Feng3, Han-Qing Yu4, M Asiri Abdullah5, Khalid A Alamry5.
Abstract
Monodispersed core-shell silica spheres with fibrous shell structure and tunable pore size were prepared by using a one-pot oil-water biphase method. The pore size could be tuned from 7 nm to 37 nm by using organic solvents with different polarities as oil phase. The spheres synthesized by using benzene as organic solvent had the maximum pore size of 37 nm and possessed a surface area of 61 m2 g-1. The obtained wide pore core-shell silica spheres were applied for rapidly separating small molecules, peptides, small proteins, and large proteins with molecular weight up to 200 kDa. Since the pore size of the core-shell silica spheres was sufficiently large for the free access of all the solutes, sharp and symmetric peaks were obtained. The separation performance was as high as 264,531 plates m-1 for fluorene. The great efficient separation demonstrates that the wide pore core-shell silica spheres have a great potential for rapid analysis of both small and large solutes with high performance liquid chromatography.Entities:
Keywords: Core-shell; Dendritic; HPLC; Large; Pore; Silica
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Year: 2018 PMID: 29426717 DOI: 10.1016/j.chroma.2018.02.002
Source DB: PubMed Journal: J Chromatogr A ISSN: 0021-9673 Impact factor: 4.759