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Publication
Featured researches published by Zhu Ye.
Langmuir | 2012
Yi Chenglin; Yang Yiqun; Zhu Ye; Liu Na; Liu Xiaoya; Luo Jing; Jiang Ming
Self-assembled polymeric micelles can be used as efficient particulate emulsifiers. To explore the relationship between the structure and the oil-water interfacial behavior of the micelle emulsifiers, a new type of amphiphilic random copolymer, poly{(styrene-alt-maleic acid)-co-[styrene-alt-(N-3,4-dihydroxyphenylethyl-maleamic acid)]} (SMA-Dopa), was synthesized, self-assembled into micelles, and used as emulsifiers. SMA-Dopa was synthesized via an aminolysis reaction between dopamine and commercial alternating copolymer poly(styrene-alt-maleic anhydride) (SMA). Dopamine moiety facilitated the self-assembly of the SMA-Dopa in selective-solvent into stable micelles, and increased the adsorption of the SMA-Dopa at the oil-water interface. Additionally, the structural transition of the self-assembled SMA-Dopa52 micelles in response to pH and salinity changes were confirmed by means of TEM, AFM, DLS, aqueous electrophoresis techniques, potentiometric titration, and pyrene fluorescence probe methods. Micelles shrunk with increasing salinity, and flocculation of the shrunken primary micelles occurred at salt concentration exceeding 0.1 M. The micelles swelled with increasing pH, and the disassociation of the SMA-Dopa52 micelles occurred at pH above approximately 6.5. The structure of the micelles plays a crucial role in the oil-water interfacial performance. Micelles with various structures were used as emulsifiers to adsorb at the styrene-water and toluene-water interfaces. The emulsifying characteristics demonstrated that self-assembled SMA-Dopa52 micelles with moderately swollen structure (at 2 < pH < 6) combine the advantages of the solid particulate emulsifiers and polymeric surfactants, possessing excellent emulsifying efficiency and good emulsion stability. Moreover, the emulsifying performance of the SMA-Dopa52 micelles could be enhanced by the addition of salt.
Archive | 2017
Liu Xiaoya; Zhao Fangqiao; Fei Xiaoma; Wei Wei; Luo Jing; Zhu Ye
Journal of Applied Polymer Science | 2017
Zhao Fangqiao; Fei Xiaoma; Wei Wei; Ye Weitao; Luo Jing; Chen Yaxin; Zhu Ye; Liu Xiao-ya
Archive | 2015
Liu Xiaoya; Shi Tiantian; Sun Jiadi; Zhu Ye; Luo Jing; Gu Yao
Archive | 2017
Liu Xiaoya; Zhu Chao; Zhu Ye; Wei Wei; Gu Yao
Archive | 2017
Liu Xiaoya; Xu Sheng; Wu Qian; Wang Yichen; Zhao Wei; Luo Jing; Zhu Ye; Wei Wei
Archive | 2017
Liu Xiaoya; Zhu Chao; Zhu Ye; Wei Wei; Gu Yao
Archive | 2017
Liu Xiaoya; Cui Yan; Zhu Ye; Gu Yao; Sun Jiadi
Biosensors and Bioelectronics | 2017
Xu Sheng; Zhang Rongli; Zhao Wei; Zhu Ye; Wei Wei; Liu Xiaoya; Luo Jing
Archive | 2016
Liu Xiaoya; Shi Tiantian; Sun Jiadi; Zhu Ye; Meng Long; Gu Yao