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Dive into the research topics where Zhiliu Feng is active.

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Featured researches published by Zhiliu Feng.


European Polymer Journal | 2002

Nonisothermal crystallization and melting behavior of poly(3-hydroxybutyrate) and maleated poly(3-hydroxybutyrate)

Cheng Chen; Bin Fei; Shuwen Peng; Yugang Zhuang; Lisong Dong; Zhiliu Feng

Nonisothermal crystallization and melting behavior of poly(3-hydroxybutyrate) (PHB) and maleated PHB were investigated by differential scanning calorimetry using various cooling rates. The results show that the crystallization behavior of maleated PHB from the melt greatly depends on cooling rates and its degree of grafting. With the increase in cooling rate, the crystallization process for PHB and maleated PHB begins at lower temperature. For maleated PHB, the introduction of maleic anhydride group hinders its crystallization, causing crystallization and nucleation rates to decrease, and crystallite size distribution becomes wider. The Avrami analysis, modified by Jeziorny, was used to describe the nonisothermal crystallization of PHB and maleated PHB. Double melting peaks for maleated PHB were observed, which was caused by recrystallization during the heating process.


Journal of Polymer Science Part B | 1998

Nonisothermal crystallization kinetics of poly(β-hydroxybutyrate)

Yuxian An; Lisong Dong; Zhishen Mo; Tianxi Liu; Zhiliu Feng

Kinetics of nonisothermal crystallization of poly(β-hydroxybutyrate) from melt and glassy states were performed by differential scanning calorimetry under various heating and cooling rates. Several different analysis methods were used to describe the process of nonisothermal crystallization. The results showed that both Avrami treatment and a new method developed by combining the Avrami equation and Ozawa equation could describe this system very well. However, Ozawa analysis failed. By using an evaluation method, proposed by Kissinger, activation energies have been evaluated to be 92.6 kJ/mol and 64.6 kJ/mol for crystallization from the glassy and melt state, respectively.


Journal of Polymer Science Part B | 1999

Nonisothermal crystallization and melting behavior of poly(β‐hydroxybutyrate)–Poly(vinyl‐acetate) blends

Yuxian An; Lixia Li; Lisong Dong; Zhishen Mo; Zhiliu Feng

Nonisothermal crystallization and melting behavior of poly(P-hydroxybutyrate) (PHB)-poly(vinyl acetate) (PVAc) blends from the melt were investigated by differential scanning calorimetry using various cooling rates. The results show that crystallization of PHB from the melt in the PHB-PVAc blends depends greatly upon cooling rates and blend compositions. For a given composition, the crystallization process begins at higher temperatures when slower scanning rates are used. At a given cooling rate, the presence of PVAc reduces the overall PHB crystallization rate. The Avrami analysis modified by Jeziorny and a new method were used to describe the nonisothermal crystallization process of PHB-PVAc blends very well. The double-melting phenomenon is found to be caused by crystallization during heating in DSC


European Polymer Journal | 1999

Isothermal crystallization kinetics and melting behavior of poly(β-hydroxybutyrate)/poly(vinyl acetate) blends

Yuxian An; Lisong Dong; Lixia Li; Zhishen Mo; Zhiliu Feng

The overall isothermal crystallization kinetics and melting behavior of poly(beta-hydroxybutyrate) (PHB)/poly(vinyl acetate) (PVAc) blends were studied by using differential scanning calorimetry(DSC). The Avrami analysis indicates that the addition of PVAc into PHB results in the decrease in the overall crystallization rate of the PHB phase, but does not affect PHBs nucleation mechanism and geometry of crystal growth. The activation energy of the overall process of crystallization increases with the increasing PVAc content in the blends. The phenomenon of multiple melting endotherms is observed, which is caused by melting and recrystallization during the DSC heating run


European Polymer Journal | 1997

Crystallization kinetics and morphology of poly(β-hydroxybutyrate) and poly(vinyl acetate) blends

Yuxian An; Lisong Dong; Yugang Zhuang; Zhishen Mo; Zhiliu Feng

The crystallization behavior and morphology of poly(β-hydroxybutyrate) and poly(vinyl acetate) blends have been studied with DSC, POM, SAXS and WAXD methods. The results indicate that the overall crystallization rate and spherulite growth rate are slower in the blends than that in the pure PHB. The addition of PVAc has no effect on the crystal structure of PHB, but affects its crystalline morphology. During crystallization of PHB, PVAc chains were being rejected into the region between the lamellae of crystalline PHB.


Photosynthetica | 2008

Sensitivity of Metasequoia glyptostroboides to ozone stress

Zhiliu Feng; H. Q. Zeng; Xiaoke Wang; Qiwei Zheng; Zongwei Feng

Abstract2-year-old seedlings of Metasequoia glyptostroboides were grown in open top chambers and exposed to four ozone concentrations [O3] (charcoal-filtered air, CF; 50, 100, and 200 mm3 m−3) for 25 d. Measurements of growth, leaf chlorophyll (Chl) content, and gas exchange parameters were made before and/or after O3 exposure. Leaf length, crown width, Chl a/b, net photosynthetic rate, stomatal conductance, and transpiration rate were significantly reduced at 100 and 200 mm3(O3) m−3. A remarkable decrease in stomatal conductance also occurred at 50 mm3(O3) m−3.


Polymer | 1998

Compatibilization effect of graft copolymer on immiscible polymer blends: 1. LLDPE/SBS/LLDPE-g-PS systems

Hanqiao Feng; Chaohui Ye; Jun Tian; Zhiliu Feng; Baotong Huang

Abstract The compatibilizing effect of graft copolymer, linear low density polyethylene-g-polystyrene (LLDPE- g -PS), on immiscible blends of LLDPE with styrene-butadiene-styrene triblock copolymer (SBS) has been investigated by means of 13 C CPMAS n.m.r. and d.s.c. techniques. The results indicate that LLDPE- g -PS is an effective compatibilizer for LLDPE/SBS blends. It was found that LLDPE- g -PS chains connect two immiscible components, LLDPE and SBS, through solubilization of chemically identical segments of LLDPE- g -PS into the amorphous region of LLDPE and PS block domain of SBS, respectively. It was also found that LLDPE- g -PS chains connect the crystalline region of LLDPE by isomorphism, with serious effects on the supermolecular structure of LLDPE. The effect of LLDPE- g -PS on the supermolecular structure of LLDPE in the LLDPE/SBS blends obviously depends on the composition of the blends, but has little dependence on the PS grafting yields of LLDPE- g -PS.


Polymer | 1996

Miscibility and crystallization behaviour of poly(ether ether ketone)/polyimide blends

Xiaohua Kong; Fengen Teng; Hao Tang; Lisong Dong; Zhiliu Feng

The miscibility and crystallization behaviour of the blends of poly(ether ether ketone) (PEEK) with two thermoplastic polyimides (PI), PEI-E and YS-30, prepared by solution blending were studied by the use of small-angle X-ray scattering (SAXS), differential scanning calorimetry (d.s.c.) and polarizing microscopy techniques. The results obtained show that PEEK/YS-30 is miscible, while PEEK/PEI-E is partially miscible only in the composition range with PEI-E content up to 20 wt%. The crystallization behaviour of PEEK in PEEK/PI blends depends on the crystallization condition of the blend sample as well as the chemical structure and the content of the PI added. Our SAXS results indicate that the segregation of PI molecular chains during crystallization of PEEK chains in the blends is interfibrillar for PEEK/PEI-E blends, but interlamellar for PEEK/YS-30 blends. The compatibility and the crystallization behaviour are discussed in terms of charge transfer interaction between PI and PI molecules and between PI and PEEK molecules.


European Polymer Journal | 1997

The aggregation state of polyimide

Hao Tang; Hanqiao Feng; Haobin Luo; Lisong Dong; Zhiliu Feng

The aggregation slate of polyimide in solution and in the solid state were studied using the NMR and fluorescence techniques. The experiment results show that the decay of spin-spin relaxation of polyimides with concentration can be described as a single exponential, biexponential, triexponential, biexponential profile. Meanwhile, the intensities of fluorencence spectra increase rapidly with the concentration, and some peaks have a red-shift. Based upon these experiment results, it can be concluded that polyimide in solution is very flexible, and there are several critical concentrations at which polyimide has distinctly different aggregation states. The existence of intermolecular charge transfer interaction between polyimide chains has been proved, and the interaction has a profound effect on the glass transition temperature, T-g, and the dynamic mechanical modulus of polyimide


European Polymer Journal | 1998

Miscibility and specific interactions in poly(β-hydroxybutyrate-co-β-hydroxyvalerate) and poly(p-vinylphenol) blends

Lisong Dong; Zhiliu Feng; Hanqiao Feng

The blends of poly(beta-hydroxybutyrate-co-beta-hydroxyvalerate) (P(HB-co-HV)/poly(p-vinylphenol)(PVPh) were investigated by differential scanning calorimetry (DSC), Fourier transform IR (FT-IR) spectroscopy and high-resolution solid-state C-13 NMR techniques. Single glass transition temperatures existing in the whole composition range indicates that these blends are miscible. The presence of hydrogen bonding between the hydroxyl of PVPh and carbonyl of P(HB-co-HV), shown by FT-IR spectra, is the origin of the miscibility. Furthermore, results obtained by high-resolution solid-state C-13 NMR give more information about the structure of the blends

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Lisong Dong

Chinese Academy of Sciences

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Binyao Li

Chinese Academy of Sciences

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Yanchun Han

Chinese Academy of Sciences

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Yuming Yang

Chinese Academy of Sciences

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Baotong Huang

Chinese Academy of Sciences

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Hao Tang

Chinese Academy of Sciences

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Hanqiao Feng

Chinese Academy of Sciences

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Yuxian An

Chinese Academy of Sciences

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Zhishen Mo

Chinese Academy of Sciences

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Yugang Zhuang

Chinese Academy of Sciences

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