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Journal of Chromatography. A|September 13, 2011
Silica-based, hyper-crosslinked acid stable stationary phases for high performance liquid chromatographyYu Zhang, Hao Luo, Peter W CarrJournal of Chromatography. A|January 22, 2008
Synthesis and characterization of silica-based hyper-crosslinked sulfonate-modified reversed stationary phasesHao Luo, Lianjia Ma, Yu Zhang, et al.Journal of Chromatography. A|January 14, 2011
Novel ultra stable silica-based stationary phases for reversed phase liquid chromatography--study of a hydrophobically assisted weak acid cation exchange phaseYu Zhang, Peter W CarrJournal of Chromatography. A|August 25, 2009
A visual approach to stationary phase selectivity classification based on the Snyder-Dolan Hydrophobic-Subtraction ModelYu Zhang, Peter W CarrJournal of Chromatography. A|March 7, 2006
Development of acid stable, hyper-crosslinked, silica-based reversed-phase liquid chromatography supports for the separation of organic basesLianjia Ma, Hao Luo, Jun Dai, et al.Journal of Chromatography. A|July 12, 2008
Application of silica-based hyper-crosslinked sulfonate-modified reversed stationary phases for separating highly hydrophilic basic compoundsHao Luo, Lianjia Ma, Changyub Paek, et al.Journal of Separation Science|May 14, 2011
Optimization of the synthesis of a hyper-crosslinked stationary phases: a new generation of highly efficient, acid-stable hyper-crosslinked materials for HPLCYu Zhang, Yuming Huang, Peter W CarrJournal of the American Chemical Society|August 28, 2003
An ultra acid stable reversed stationary phaseBrian C Trammell, Lianjia Ma, Hao Luo, et al.Journal of Chromatography. A|January 5, 2005
Synthesis and characterization of hypercrosslinked, surface-confined, ultra-stable silica-based stationary phasesBrian C Trammell, Lianjia Ma, Hao Luo, et al.Analytical Chemistry|September 28, 2002
Highly cross-linked self-assembled monolayer stationary phases: an approach to greatly enhancing the low pH stability of silica-based stationary phasesBrian C Trammell, Lianjia Ma, Hao Luo, et al.Pageof 2,570