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Dive into the research topics where Qing Guangyan is active.

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Featured researches published by Qing Guangyan.


Science China-chemistry | 2014

New approach for chiral separation: from polysaccharide-based materials to chirality-responsive polymers

Ding Peng; Chang Baisong; Qing Guangyan; Sun Taolei

Chiral separation that is closely related to daily life is a meaningful research. Polysaccharide-(e.g., cellulose, amylose derivatives) based chiral packing materials afford powerful chiral stationary phases (CSPs) toward a broad range of racemic compounds. However, considering the explosive growth of specific chiral drugs, the separation efficiencies of these CSPs need further improvement, which calls for new approaches and strategies. Smart polymers can change their physical or chemical properties dynamically and reversibly according to the external stimuli (e.g., thermo-, pH, solvent, ion, light, critical parameters for chromatographic separation) exerted on them, subsequently resulting in tunable changes in the macroscopic properties of materials. In addition to their excellent controllability, the introduction of chiral characteristics into the backbones or side-chains of smart polymers provides a promising route to realize reversibly conformational transition in response to the chiral analytes. This dramatic transition may significantly improve the performance of materials in chiral separation through modulating the enantioselective interactions between materials and analytes. With the help of chirality-responsive polymers, intelligent and switchable CSPs could be developed and applied in column-liquid chromatography. In these systems, the elution order or enantioselectivity of chiral drugs can be precisely modulated, which will help to solve many challenging problems that involve complicated enantiomers. In this paper we introduce some typical examples of smart polymers that serve as the basis for a discussion of emerging developments of CPSs, and then briefly outline the recent CSPs based on natural and certain synthetic polymers.


Archive | 2013

Glucose responsive gold nanoparticle and preparation method and application thereof

Sun Taolei; Zhang Mingxi; Qing Guangyan


Archive | 2017

Porous membrane material for detecting phosphoinositide, and preparation and detection method thereof

Qing Guangyan; Sun Taolei; Lu Qi


Archive | 2017

Magnetic shell-core structural nanoparticles and preparation method and application thereof

Qing Guangyan; Sun Taolei; Chen Zhonghui; Zhang Zhengkai


Archive | 2017

Phosphopeptide enriching material and preparation method and application thereof

Sun Taolei; Liang Xinmiao; Qing Guangyan; Li Xiuling; Lu Qi; Jiang Ge


Archive | 2017

Monosaccharide polymer enriching material and preparation thereof, and application of the monosaccharide polymer enriching material to enrichment of glycopeptides

Liang Xinmiao; Sun Taolei; Li Xiuling; Qing Guangyan; Jiang Ge; Xiong Yuting


Archive | 2017

Lactose-based intelligent polymer and application thereof

Sun Taolei; Qing Guangyan; Xiong Yuting


Archive | 2017

Dihydroxyphenyl-contained compound modified copper sulphide nanometer material and application thereof to glycopeptides enrichment

Qing Guangyan; Zhang Kaimeng; Huang Longquan; Sun Taolei


Archive | 2017

Method for enriching and detecting phosphorylated proteins

Qing Guangyan; Sun Taolei; Lu Qi


Journal of materials chemistry. B: materials for biology and medicine | 2017

ジペプチドを基にしたゲルの光応答性における分子キラリティーの役割の調査【Powered by NICT】

Chen Zhonghui; Lv Ziyu; Qing Guangyan; Sun Taolei

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Sun Taolei

Wuhan University of Technology

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Liang Xinmiao

Dalian Institute of Chemical Physics

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Chang Baisong

Wuhan University of Technology

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Ding Peng

Wuhan University of Technology

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