Xueqing Liu
Jianghan University
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Publication
Featured researches published by Xueqing Liu.
Luminescence | 2016
Wenjun Wei; Cui Liu; Jiyan Liu; Xueqing Liu; Linling Zou; Shaojun Cai; Hong Shi; Yuan-Cheng Cao
This paper studied the effects of cations and polymer matrix on the fluorescent properties of quantum dots (QDs). The results indicated that temperature has a greater impact on fluorescence intensity than clay cations (mainly K(+) and Na(+) ). Combined fluorescence lifetime and steady-state spectrometer tests showed that QD lifetimes all decreased when the cation concentration was increased, but the quantum yields were steady at various cation concentrations of 0, 0.05, 0.5 and 1 M. Poly(ethylene oxide) (PEO), poly(vinyl alcohol) (PVA) and diepoxy resin were used to study the effects of polymers on QD lifetime and quantum yield. The results showed that the lifetime for QDs 550 nm in PEO and PVA was 17.33 and 17.12 ns, respectively; for the epoxy resin, the lifetime was 0.74 ns, a sharp decrease from 24.47 ns. The quantum yield for QDs 550 nm changed from 34.22% to 7.45% and 7.81% in PEO and PVA, respectively; for the epoxy resin the quantum yield was 2.25%. QDs 580 nm and 620 nm showed the same results as QDs 550 nm. This study provides useful information on the design, synthesis and application of QDs-polymer luminescent materials. Copyright
Polymers & Polymer Composites | 2012
Xueqing Liu; Jiyan Liu; Shan Sun; Jia Chen
Exolit OP930 (abbreviate OP930) product based on aluminum (diethyl phosphinate) is a new class of flame retardants for the use in epoxy resin (EP). In this paper, the mechanical properties, the morphologies of fracture surfaces, thermal stability, glass transition temperature (Tg) and flame retardant of OP930-EP composites with different composition have been studied. The composites exhibit satisfying thermal properties and a high limiting oxygen index (LOI) value as well as good compatibility with the matrix. Compared to neat resin, the mechanical properties of composites are also on a very good level.
Royal Society Open Science | 2017
Sha Peng; Ming Zhou; Feiyan liu; Chang Zhang; Xueqing Liu; Jiyan Liu; Liyong Zou; Jia Chen
Flame-retardant polyvinyl alcohol (PVA) membranes with high transparency and flexibility were prepared by mixing an aqueous solution of a phosphorus-containing acrylic acid (AOPA) with PVA. The reaction between AOPA and PVA, the transparency, the crystallinity and the flexibility of the membrane were investigated with Fourier transform infrared spectrometry (FTIR), UV–vis light transmittance, X-ray diffraction and tensile tests, respectively. The limited oxygen index (LOI) and vertical flame (UL 94 VTM), microscale combustion calorimetry, thermogravimetric analysis (TGA) and TGA-FTIR were employed to evaluate the flame retardancy as well as to reveal the corresponding mechanisms. Results showed that PVA containing 30 wt% of AOPA can reach the UL 94 VTM V0 rating with an LOI of 27.3% and retain 95% of the original transparency of pure PVA. Adding AOPA reduces crystallinity of PVA, while the flexibility is increased. AOPA depresses the thermal degradation of PVA and promotes char formation during combustion. The proposed decomposition mechanism indicates that AOPA acts mainly in the condensed phase.
Polymer Engineering and Science | 2015
Xueqing Liu; Jiyan Liu; Jia Chen; Shaojun Cai; Chenlong Hu
Materials & Design | 2016
Wenjun Wei; Heng Xu; Qingliang You; Qi Cheng; Cui Liu; Linling Zou; Xueqing Liu; Jiyan Liu; Yuan-Cheng Cao; Guang Zheng
Fire and Materials | 2014
Xueqing Liu; Jiyan Liu; Shan Sun; Jia Chen; Shaojun Cai
Fire and Materials | 2014
Jiyan Liu; Jia Chen; Xueqing Liu; Shan Sun; Shaojun Cai
Journal of Thermal Analysis and Calorimetry | 2017
Quan Hu; Panrui Peng; Sha Peng; Jiyan Liu; Xueqing Liu; Liyong Zou; Jia Chen
ACS Applied Materials & Interfaces | 2018
Xueqing Liu; Sha Peng; Shuyu Gao; Yuan-Cheng Cao; Qingliang You; Liyong Zhou; Yongcheng Jin; Zhihong Liu; Jiyan Liu
Journal of Thermal Analysis and Calorimetry | 2016
Liyong Zou; Jiyan Liu; Xueqing Liu; Xiaomeng Wang; Jia Chen