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Qianying Sheng

Showing results (1-10 of 23) with videos related to

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Analytical Chemistry|February 23, 2019
Hydrophilic Nanocomposite Functionalized by Carrageenan for the Specific Enrichment of GlycopeptidesYingxin Chen, Qianying Sheng, Yayun Hong, et al.
Chemistry, an Asian Journal|April 9, 2025
Theoretical Calculations in Separation Science for Analytical Chemistry: Applications and InsightsDongdong Wang, Yuting Xiong, Qianying Sheng, et al.
Journal of Chromatography. A|April 23, 2013
A novel ionic-bonded cellulose stationary phase for saccharide separationQianying Sheng, Yanxiong Ke, Kuiyong Li, et al.
Talanta|March 7, 2021
Hydrophilic graphene oxide-dopamine-cationic cellulose composites and their applications in N-Glycopeptides enrichmentQianying Sheng, Junyan Li, Yingxin Chen, et al.
The Analyst|April 26, 2012
Sequential elution of multiply and singly phosphorylated peptides with polar-copolymerized mixed-mode RP18/SCX materialXiuling Li, Zhimou Guo, Qianying Sheng, et al.
Journal of Chromatography. A|May 6, 2014
A dextran-bonded stationary phase for saccharide separationQianying Sheng, Xindai Su, Xiuling Li, et al.
Journal of Separation Science|July 13, 2016
Synthesis and evaluation of a maltose-bonded silica gel stationary phase for hydrophilic interaction chromatography and its application in Ginkgo Biloba extract separation in two-dimensional systemsQianying Sheng, Kaiya Yang, Yanxiong Ke, et al.
Talanta|June 2, 2018
Highly efficient enrichment of phosphopeptides from HeLa cells using hollow magnetic macro/mesoporous TiO<sub>2</sub> nanoparticlesYayun Hong, Qiliang Zhan, Chenlu Pu, et al.
Journal of Separation Science|January 16, 2018
Selective enrichment of N-linked glycopeptides and glycans by using a dextran-modified hydrophilic materialLinlin Chen, Di Ding, Qianying Sheng, et al.
Journal of Separation Science|September 8, 2011
Selective enrichment of glycopeptides for mass spectrometry analysis using C18 fractionation and titanium dioxide chromatographyBo Zhang, Qianying Sheng, Xiuling Li, et al.
Pageof 3

Showing results (1-10 of 23) with videos related to

Sort By:
Pageof 3
Analytical Chemistry|February 23, 2019
Hydrophilic Nanocomposite Functionalized by Carrageenan for the Specific Enrichment of GlycopeptidesYingxin Chen, Qianying Sheng, Yayun Hong, et al.
Chemistry, an Asian Journal|April 9, 2025
Theoretical Calculations in Separation Science for Analytical Chemistry: Applications and InsightsDongdong Wang, Yuting Xiong, Qianying Sheng, et al.
Journal of Chromatography. A|April 23, 2013
A novel ionic-bonded cellulose stationary phase for saccharide separationQianying Sheng, Yanxiong Ke, Kuiyong Li, et al.
Talanta|March 7, 2021
Hydrophilic graphene oxide-dopamine-cationic cellulose composites and their applications in N-Glycopeptides enrichmentQianying Sheng, Junyan Li, Yingxin Chen, et al.
The Analyst|April 26, 2012
Sequential elution of multiply and singly phosphorylated peptides with polar-copolymerized mixed-mode RP18/SCX materialXiuling Li, Zhimou Guo, Qianying Sheng, et al.
Journal of Chromatography. A|May 6, 2014
A dextran-bonded stationary phase for saccharide separationQianying Sheng, Xindai Su, Xiuling Li, et al.
Journal of Separation Science|July 13, 2016
Synthesis and evaluation of a maltose-bonded silica gel stationary phase for hydrophilic interaction chromatography and its application in Ginkgo Biloba extract separation in two-dimensional systemsQianying Sheng, Kaiya Yang, Yanxiong Ke, et al.
Talanta|June 2, 2018
Highly efficient enrichment of phosphopeptides from HeLa cells using hollow magnetic macro/mesoporous TiO<sub>2</sub> nanoparticlesYayun Hong, Qiliang Zhan, Chenlu Pu, et al.
Journal of Separation Science|January 16, 2018
Selective enrichment of N-linked glycopeptides and glycans by using a dextran-modified hydrophilic materialLinlin Chen, Di Ding, Qianying Sheng, et al.
Journal of Separation Science|September 8, 2011
Selective enrichment of glycopeptides for mass spectrometry analysis using C18 fractionation and titanium dioxide chromatographyBo Zhang, Qianying Sheng, Xiuling Li, et al.
Pageof 3