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Dive into the research topics where Qiaolian Lv is active.

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Featured researches published by Qiaolian Lv.


Carbohydrate Polymers | 2017

Rheological properties of nanocrystalline cellulose suspensions

Yang Chen; Chunjiang Xu; Jing Huang; Defeng Wu; Qiaolian Lv

Rheological behavior, including linear and nonlinear, as well as transient rheology of nanocrystalline cellulose (NCC) suspensions was studied in this work. Two kinds of polymer solutions, aqueous poly(vinyl alcohol) (PVA) with flexible chain structure and aqueous carboxymethyl cellulose (CMC) with semi-rigid chain structure, were used as the suspension media to further explore the role that the interactions among NCC and polymers played during shear flow. The results reveal that NCC has lower values of percolation threshold in the PVA solution than in the CMC one during small amplitude oscillatory shear (SAOS) flow because the flexible PVA chain has higher adsorbed level onto NCC particles than the negatively charged semi-rigid CMC chain, which is further confirmed by the Fourier transformed infrared (FT-IR) spectroscopy tests. As a result, the NCC suspension shows a weak strain overshoot in PVA solution during large amplitude oscillatory shear (LAOS) flow, which cannot be seen on the one in CMC solution. During startup shear flow, both of these two suspensions show evident stress overshoot behavior with the strain-scaling characteristics, indicating the formation of ordered long-term structure of rod-like NCC particles with self-similarity during flow. However, NCC suspension have far stronger stress overshoot response in CMC solution relative to the one in PVA solution. A possible synergy mechanism between NCC and CMC chain is hence proposed.


Cellulose | 2017

Polylactide/cellulose nanocrystal composites: a comparative study on cold and melt crystallization

Chunjiang Xu; Qiaolian Lv; Defeng Wu; Zhifeng Wang

Polylactide (PLA) composites with pristine cellulose nanocrystals (CNC) and acetylated one (aCNC) were prepared for the crystallization study. The roles of CNC and aCNC in cold and melt crystallization of PLA were explored. Both CNC and aCNC have good nucleation activity during cold crystallization of PLA, but also highly impede transport of adjacent chain segments to the growing surface, acting as the role of physical barrier in the glassy bulk. Within the experimental temperature range, growth dominates the overall kinetics, rather than nucleation. Therefore, barrier role overwhelms nucleation agent one and as a result, the cold crystallization rates of composites decrease as compared with neat PLA, accompanied by decreased degrees of crystallinity. During melt crystallization, although the presence of CNC and aCNC leads to sharply increased system viscosities, reducing chain mobility, nucleation is the dominant role as the systems crystallize from the melts. Thus, the presence of CNC and aCNC promotes melt crystallization of PLA, and the composites show far higher crystallization rates and degrees of crystallinity than neat PLA. Besides, the surface acetylation of CNC improves its nucleation ability during melt crystallization of PLA, and as a result, the composite with aCNC has denser fold surfaces relative to the one with CNC. But the presence of these two kinds of particles has no evident influence on the lamellar structure of PLA whether in the cold or in melt crystallization. This work can provide useful information on the crystallization control of PLA using CNC.


RSC Advances | 2016

Crystallization of poly(ε-caprolactone) in its immiscible blend with polylactide: insight into the role of annealing histories

Qiaolian Lv; Defeng Wu; Hui Xie; Sheng Peng; Yang Chen; Chunjiang Xu

Polylactide/poly(e-caprolactone) (PLA/PCL) is a very promising blend material with biodegradable characteristics and tailorable performance because of the good property complementarity between the two components. However, PLA and PCL are asymmetric thermodynamically: PLA has far higher melting point than PCL, and crystallization temperature of PCL is even lower than glass transition temperature of PLA. But this also provides good opportunity to control final structure and properties of PCL/PLA blends through thermal annealing. In this work, two annealing routes were designed to control supermolecular structure of discrete PLA phase in the PCL-rich blends, and the two systems, the blend with discrete amorphous PLA domains and the one with discrete crystallized PLA phase, were obtained. The interfacial property alteration and crystallization behavior of continuous PCL phase were then studied. The results are very interesting. Relative to the amorphous PLA phase, the crystallized PLA domains have better affinity to the continuous PCL phase, showing stronger nucleating effect to the crystallization of PCL and higher impeding effect on the shear flow of blend system. But the presence of discrete PLA phase, whether in crystallized or amorphous state, has no evident influence on the crystal structure and lamellar thickness of PCL. These effects on the crystallization of PCL make the mechanical properties of blends very sensitive to the annealing histories. The blend sample with the crystallized PLA domains shows higher modulus and strength than the one with the amorphous PLA domains, and the values of modulus and strength increase by about 130% and 43%, respectively, relative to the neat PCL. This work provides a facile and green approach to well tailor the supermolecular structure and mechanical properties of the PCL/PLA blends through the simple control of annealing process.


Carbohydrate Polymers | 2017

Transcrystallization of polypropylene in the presence of polyester/cellulose nanocrystal composite fibers

Jing Huang; Chunjiang Xu; Defeng Wu; Qiaolian Lv

Pristine cellulose nanocrystal (CNC) and acetylated one (aCNC) were used as the modifier to change the surface properties of poly(trimethylene terephthalate) (PTT) fibers for the transcrystallization study of polypropylene (PP). The results reveal that all three kinds of fibers, including the neat PTT, PTT/CNC and PTT/aCNC ones can induce PP transcrystallization. But the PTT/aCNC fiber-filled PP system shows the most remarkable transcrystallization behavior because of the highest nucleation density of PTT/aCNC fiber. The long period and lamellar thickness of two composite fiber-filled PP systems increase as compared with the neat PTT fiber-filled one, which is caused by the reduced system undercooling and higher surface energy level of composite fibers. Accordingly, the former two systems show the lower transcrystal growth rates than the latter, which is further analyzed by the secondary nucleation theory. This work can provide useful information on the control of PP transcrystallization using the CNC-filled polyester composite fibers.


Cellulose | 2018

Cyclic tensile properties of the polylactide nanocomposite foams containing cellulose nanocrystals

Yaxin Qiu; Qiaolian Lv; Defeng Wu; Wenyuan Xie; Sheng Peng; Ruyue Lan; Hui Xie

Cellulose nanocrystal (CNC) filled polylactide (PLA) nanocomposites are of interest because both the filler particles and matrix polymer are biodegradable. Foaming with high pressure inert gas is a promising way to open potential applications of this kind of green nanocomposites as lightweight materials. To establish the structure–property relations of this kind of foams is hence of great significance. In this work, PLA/CNC nanocomposites containing three types of CNC particles, including pristine CNC and acetylated ones with lower and moderate degrees of substitution, were foamed using CO2 as the blowing agent for the studies mentioned above. The results show that the presence of all three kinds of CNC particles has large influence on cellular structure and cell morphology, and as a result, affects final mechanical properties of foams. The tensile cycle tests were then performed as an efficient tool to further figure out clear information on the contributions of reinforcement of filler and altered cell structure to the plasticity and elasticity of foams. The obtained results provide useful information on the optimization of cell structure and mechanical properties of PLA foams using small amounts of CNC particles through controlling their surface properties.


Carbon | 2015

Polylactide composite foams containing carbon nanotubes and carbon black: Synergistic effect of filler on electrical conductivity

Defeng Wu; Qiaolian Lv; Saihua Feng; Jianxiang Chen; Yang Chen; Yaxin Qiu; Xin Yao


Carbohydrate Polymers | 2016

Polylactide/acetylated nanocrystalline cellulose composites prepared by a continuous route: A phase interface-property relation study

Chunjiang Xu; Jianxiang Chen; Defeng Wu; Yang Chen; Qiaolian Lv; Mengqi Wang


Composites Part A-applied Science and Manufacturing | 2017

The role of nanocrystalline cellulose during crystallization of poly(ε-caprolactone) composites: Nucleation agent or not?

Qiaolian Lv; Chunjiang Xu; Defeng Wu; Zhifeng Wang; Ruyue Lan; Lisheng Wu


Thermochimica Acta | 2015

Crystallization of Poly(ϵ-caprolactone) composites with graphite nanoplatelets: Relations between nucleation and platelet thickness

Qiaolian Lv; Defeng Wu; Yaxin Qiu; Jianxiang Chen; Xin Yao; Kunshan Ding; Nengxin Wei


Industrial & Engineering Chemistry Research | 2016

Nucleation of a Thermoplastic Polyester Elastomer Controlled by Silica Nanoparticles

Jianxiang Chen; Qiaolian Lv; Defeng Wu; Xin Yao; Jun Wang; Zhaoshun Li

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