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Dive into the research topics where Chunfa Ouyang is active.

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Featured researches published by Chunfa Ouyang.


Designed Monomers and Polymers | 2015

Nanoparticles vs. nanofibers: a comparison of two drug delivery systems on assessing drug release performance in vitro

Xiaoqian Shan; Changsheng Liu; Fengqian Li; Chunfa Ouyang; Qun Gao; Kangsheng Zheng

In this study, the different encapsulation methods involving emulsification and coaxial electrospinning were both utilized to fabricate a series of core/sheath composite, nanoparticles (NPs) and Nanofibers (NFs) separately, for drug delivery on potential biological and therapeutic applications. Bovine serum albumin (BSA) was employed as an active pharmaceutical ingredient model for core; poly(L-lactic acid) (PLLA) and methoxy poly(ethyleneglycol)-Poly lactic acid (mPEG-PLA) were selected as the encapsulation matrix for sheath. Attributed to the optimized fabrication procedures, the obtained NPs and NFs had the small average diameters and narrow size distributions with uniform structures and smooth surface morphologies. Based on the drug release profiles, both the NPs provided a burst release process followed by a drug diffusion manner, while for the NFs, the drug diffusion was the predominant factor in drug release. In particular, the mPEG-PLA NFs were fabricated with excellent hydrophilicity and highly neutralized surface resulting in a sustained release of BSA over 10 days. In addition, mPEG-PLA NFs also provided a better zero-order drug release profiles during the release time from 8 to 72 h, and a one-dimensional Fickian diffusion pattern during the whole BSA release period. A cytotoxicity study suggested that the two drug delivery systems were both safe to cells. In conclusions, the synergism of PEGylation with coaxial electrospinning may be an effective way to retard the release of drugs in a more sustained manner.


Journal of Applied Polymer Science | 2009

Magnetic and optical properties of poly(vinylidene difluoride)/Fe3O4 nanocomposite prepared by coprecipitation approach

Chunhua Xu; Chunfa Ouyang; Runping Jia; Yongsheng Li; Xia Wang


Journal of Applied Polymer Science | 2012

Compatibilizer in waste tire powder and low-density polyethylene blends and the blends modified asphalt

Chunfa Ouyang; Qun Gao; Yutao Shi; Xiaoqian Shan


Construction and Building Materials | 2016

Weather aging resistance of different rubber modified asphalts

Qiang Wang; Shuo Li; Xiaoyu Wu; Shifeng Wang; Chunfa Ouyang


Journal of Nanoparticle Research | 2008

Preparation and optical properties of HgWO4 nanorods by hydrothermal method coupled with ultrasonic technique

Runping Jia; Chunfa Ouyang; Yongsheng Li; Jun-He Yang; Wang Xia


Journal of Applied Polymer Science | 2015

Research on properties of rigid polyurethane foam with heteroaromatic and brominated benzyl polyols

Hong Guo; Qun Gao; Chunfa Ouyang; Kangsheng Zheng; Wei Xu


Construction and Building Materials | 2015

Evaluation of ethylene–acrylic acid copolymer (EAA)-modified asphalt: Fundamental investigations on mechanical and rheological properties

Xiangyong Li; Chunfa Ouyang; Ye Yuan; Qun Gao; Kangsheng Zheng; Jun Yan


Polymer Engineering and Science | 2015

Influence of a synthetic ureido nucleating agent on crystallization behavior and mechanical properties of polyamide 6

Chunfa Ouyang; Weili Xue; Duoyou Zhang; Qun Gao; Xiangyong Li; Kangsheng Zheng


Journal of Applied Polymer Science | 2015

Effect of SiO2 and TiO2 nanoparticle on the properties of phenyl silicone rubber

Huan Yang; Qun Gao; Yunting Xie; Qian Chen; Chunfa Ouyang; Yaomin Xu; Xiao-Ting Ji


Archive | 2008

Method for preparing IIB group tungstate nano film

Runping Jia; Xinyao He; Xia Wang; Chunfa Ouyang; Junhe Yang

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Qun Gao

Shanghai Institute of Technology

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Runping Jia

Shanghai Institute of Technology

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Kangsheng Zheng

Shanghai Institute of Technology

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Hong Guo

Shanghai Institute of Technology

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Xiao-Ting Ji

Shanghai Institute of Technology

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Yongsheng Li

Shanghai Institute of Technology

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Chunhua Xu

Shanghai Institute of Technology

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Huan Yang

Shanghai Institute of Technology

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Weili Xue

Shanghai Institute of Technology

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