Dielectric properties and energy storage performance of CCTO/polycarbonate composites: influence of CCTO synthesis route

被引:0
|
作者
Md. Sayful Islam
W. Michael Chance
Hans-Conrad zur Loye
Harry J. Ploehn
机构
[1] University of South Carolina,Department of Chemical Engineering
[2] University of South Carolina,Department of Chemistry and Biochemistry
关键词
CCTO; Polycarbonate; Dielectric; Permittivity; Polarization; Energy density;
D O I
暂无
中图分类号
学科分类号
摘要
This work explores the effect of CaCu3Ti4O12 (CCTO) synthetic route on CCTO/polycarbonate (PC) composite microstructure, low-field dielectric properties (εeff and tan δ), and high-field polarization behavior. CCTO was synthesized via the traditional solid-state route and a wet chemical sol–gel route. PXRD, FE-SEM and BET analysis results show that sol–gel CCTO particles are 20 times smaller and have 20 times more surface area per gram than solid-state CCTO particles. Solution-blended 20 vol% sol–gel CCTO/PC composites have up to 12 times higher εeff values than PC. Surprisingly, the permittivity enhancement due to the smaller sol–gel CCTO particles is not much more than that found using the larger solid-state CCTO particles. Sol–gel CCTO/PC composites show higher dielectric loss and specific conductivity than solid-state CCTO/PC composites, probably due to the presence of polyethylene glycol added as a dispersant in sol–gel CCTO synthesis. The CCTO introduces ferroelectric behavior to the composites, including significant remanent polarization, hysteresis, and energy dissipation. The stored and recovered energy densities in CCTO/PC are up to five times higher than PC at the same applied electric field, but the percentage energy loss reaches 70 %. CCTO/PC composites also have greatly reduced breakdown field strength compared to PC, so the composites’ maximum stored energy density is much less than that of PC. Thus CCTO/PC composites are promising for applications requiring high εeff values at low field strengths, but not as dielectrics for high density, pulse power energy storage.
引用
收藏
页码:22 / 31
页数:9
相关论文
共 50 条
  • [1] Dielectric properties and energy storage performance of CCTO/polycarbonate composites: influence of CCTO synthesis route
    Islam, Md. Sayful
    Chance, W. Michael
    zur Loye, Hans-Conrad
    Ploehn, Harry J.
    JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2015, 73 (01) : 22 - 31
  • [2] Dielectric Properties of CCTO/Poly(vinylidene fluoride) Composites for Energy Storage Applications
    Feng, Dan-Dan
    Yu, Ke
    Wang, Hong
    JOURNAL OF ADVANCED PHYSICS, 2015, 4 (04) : 384 - 387
  • [3] Fabrication and dielectric properties of CCTO/PF dielectric composites: CCTO with different particle size
    Zhao, Yang
    Zhao, Yuzhen
    Niu, Yuhua
    Zhang, Yongming
    Miao, Zongcheng
    JOURNAL OF CERAMIC PROCESSING RESEARCH, 2020, 21 (03): : 302 - 308
  • [4] Microwave Dielectric Properties of CCTO/PVA Composites
    Graca, M. P. F.
    Saboia, K. D. A.
    Amaral, F.
    Costa, L. C.
    ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2018, 2018
  • [5] Dielectric behavior of CCTO/epoxy and Al-CCTO/epoxy composites
    Prakash, B. Shri
    Varma, K. B. R.
    COMPOSITES SCIENCE AND TECHNOLOGY, 2007, 67 (11-12) : 2363 - 2368
  • [6] Microstructure and Dielectric Properties of Silicone Rubber/CCTO Composites
    Ab Karim, Saniah
    Sulaiman, Muhammad Azwadi
    Masri, Mohamad Najmi
    Abu Bakar, Mohamad Bashree
    Amini, Mohd Hazim Mohamad
    Ain, Mohd Fadzil
    Ahmad, Zainal Arifin
    MATERIALS CHARACTERIZATION USING X-RAYS AND RELATED TECHNIQUES, 2019, 2068
  • [7] Nano- and microsize effect of CCTO fillers on the dielectric behavior of CCTO/PVDF composites
    Yang, Wenhu
    Yu, Shuhui
    Sun, Rong
    Du, Ruxu
    ACTA MATERIALIA, 2011, 59 (14) : 5593 - 5602
  • [8] Enhanced dielectric properties of Ag-doped CCTO ceramics for energy storage devices
    Lee, Ji-Won
    Koh, Jung-Hyuk
    CERAMICS INTERNATIONAL, 2017, 43 (12) : 9493 - 9497
  • [9] Dielectric properties of polystyrene-CCTO composite
    Amaral, F.
    Rubinger, C. P. L.
    Henry, F.
    Costa, L. C.
    Valente, M. A.
    Barros-Timmons, A.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2008, 354 (47-51) : 5321 - 5322
  • [10] Applications of CCTO supercapacitor in energy storage and electronics
    Pandey, R. K.
    Stapleton, W. A.
    Tate, J.
    Bandyopadhyay, A. K.
    Sutanto, I.
    Sprissler, S.
    Lin, S.
    AIP ADVANCES, 2013, 3 (06)