Chem. J. Chinese Universities ›› 2019, Vol. 40 ›› Issue (4): 824.doi: 10.7503/cjcu20180695

• Polymer Chemistry • Previous Articles     Next Articles

Preparation and Performance of Novel Tb-PEG+Eu-PEG/PANI/PAN Luminescent-electrical-phase Change Composite Fibers by Electrospinning

ZHAO Yuxuan1, CHEN Yanjun2,3, PAN Guxin1, WANG Chang1, PENG Zhenbo2,3, SUN Zongxu1, LIANG Yongri1, SHI Qisong1,*()   

  1. 1. Beijing Key Lab of Special Elastomer Composite Materials, College of Material Science and Engineering, Beijing Institute of Petrochemical Technology, Beijing 102617, China
    2. College of Chemical Engineering, Ningbo Polytechnic College, Ningbo 315800, China
    3. Zhejiang Collaborative Innovation Center for High Value Utilization of Byproducts from Ethylene Project, Ningbo Polytechnic College, Ningbo 315800, China
  • Received:2018-10-16 Online:2019-01-15 Published:2019-01-15
  • Contact: SHI Qisong E-mail:shiqisong@bipt.edu.cn
  • Supported by:
    † Supported by the Natural Science Foundation of Beijing Municipality, China(No.2172023), the Open Fund of Zhejiang Collaborative Innovation Center for High Value Utilization of Byproducts from Ethylene Project, the Ningbo Polytechnic College, China(No.NZXT2018308) and the College Student Research and Career-creation Program of Beijing City, China(No.2018J00055).

Abstract:

Luminescent-electrical-phase change trifunctionalcomposite fibers based on Tb-polyethylene glycol(PEG)+Eu-PEG/polyaniline(PANI)/polyacrylonitrile(PAN) blends in which Tb-PEG and Eu-PEG act as model luminescence-phase change material, PANI acts as electrical material and PAN acts as a supporting material, were fabricated by electrospinning. Scanning electron microscopy, IR spectrum, differential scanning calorimetry, fluorescence spectroscopy and broadband dielectric spectroscopy were used to characterize the morphology structure and properties of the composite fibers. The results indicate that the composite fibers possess excellent photoluminescence, thermal energy storage and electrical conduction. The emitting color of the luminescent composite fibers can be tuned by adjusting the mass ratios of Tb-PEG, Eu-PEG under the excitation of 294 nm single-wavelength ultraviolet light. The melting temperatures of the prepared composite fibers were in the range of 54—67 ℃. The electrical conductivity reaches up to the order of 10-6 S/cm. The dielectric conductivity and constants are slightly increased with increasing of PANI content. The luminescent intensity and electrical conductivity of the composite fibers can be tuned by adjusting the amounts of Tb-PEG, Eu-PEG, PANI and molecular weight of PEG.

Key words: Polyethylene glycol, Polyaniline, Phase change, Luminescence, Electrical, Electrospinning, Composite fiber

CLC Number: 

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