High-temperature resistant polyetherimides containing a twisted spirane structure for capacitive energy storage

被引:17
|
作者
Duan, Yanan [1 ]
Wongwirat, Thumawadee [2 ]
Ju, Tianxiong [2 ]
Zhang, Shihai [3 ]
Wei, Junji [1 ]
Zhu, Lei [2 ]
机构
[1] Changan Univ, Sch Mat Sci & Engn, Inst Polymer Mat, Xian 710064, Shaanxi, Peoples R China
[2] Case Western Reserve Univ, Dept Macromol Sci & Engn, Cleveland, OH 44106 USA
[3] PolyK Technol LLC, State Coll, PA 16803 USA
基金
中国国家自然科学基金;
关键词
DENSITY;
D O I
10.1039/d3ta02534a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Intrinsic polymer dielectrics with high discharge energy density and discharge efficiency at elevated temperatures have unique advantages for the film capacitors in power electronics in a severe environment (e.g., electric vehicles). In this work, a novel polyetherimide with hydroxy groups and a twisted spirane structure was synthesized based on 3,3,3 ',3 '-tetramethyl-1,1 '-spirobisindane-5,5 '- diamino-6,6 '-diol (SPDD). Owing to the polar hydroxyls and twisted spirane structure, desirable physical properties are obtained: high glass transition temperatures (281-302 degrees C), relatively high dielectric constant (4.2-5.1), and very low dielectric loss (dissipation factor <0.002). As a result, this kind of PEIs possessed excellent high temperature dielectric properties. Among them, the PEI with 50% of spirane units exhibited a high discharge energy density of 2.24 J cm(-3) at 200 degrees C and 350 MV m(-1) and with a high discharge efficiency of 90%. This is attributed to the twisted spirane structures that break the p-p stacking of the aromatic rings of PEI polymers, thus decreasing both AC and DC electronic conductions at high fields and high temperatures. Based on these performances, spirane-based PEIs are suitable for high temperature capacitive energy storage.
引用
收藏
页码:20021 / 20030
页数:10
相关论文
共 50 条
  • [1] Optimizing high-temperature capacitive energy storage performance by constructing crosslinked structure in self-crosslinkable polyetherimides
    Zhu, Lixue
    Zheng, Zilong
    Xu, Wenhan
    Tang, Yadong
    Yao, Hongyan
    Zhang, Yunhe
    Jiang, Zhenhua
    MATERIALS TODAY ENERGY, 2022, 30
  • [2] Ladderphane copolymers for high-temperature capacitive energy storage
    Chen, Jie
    Zhou, Yao
    Huang, Xingyi
    Yu, Chunyang
    Han, Donglin
    Wang, Ao
    Zhu, Yingke
    Shi, Kunming
    Kang, Qi
    Li, Pengli
    Jiang, Pingkai
    Qian, Xiaoshi
    Bao, Hua
    Li, Shengtao
    Wu, Guangning
    Zhu, Xinyuan
    Wang, Qing
    NATURE, 2023, 615 (7950) : 62 - +
  • [3] Optimizing the conjugated structure of aromatic polyurea for high-temperature capacitive energy storage
    Zhao, Zhonghua
    Feng, Yang
    Yang, Liuqing
    Zhang, Shuo
    Liu, Xia
    Zhang, Yan
    Li, Mingru
    Li, Shengtao
    APPLIED PHYSICS LETTERS, 2023, 123 (23)
  • [4] Curly-Packed Structure Polymers for High-Temperature Capacitive Energy Storage
    Zhou, Chenyi
    Xu, Wenhan
    Zhang, Bing
    Zhang, Yunhe
    Shen, Chen
    Xu, Qinfei
    Liu, Xin
    Bertram, Florian
    Bernholc, Jerzy
    Jiang, Zhenhua
    Shang, Yingshuang
    Zhang, Haibo
    CHEMISTRY OF MATERIALS, 2022, 34 (05) : 2333 - 2341
  • [5] The scalable and high performance polyimide dielectrics containing alicyclic structures for high-temperature capacitive energy storage
    Yu, Shiqi
    Zhou, Jinlong
    Xu, Ao
    Lao, Junjie
    Luo, Hang
    Chen, Sheng
    CHEMICAL ENGINEERING JOURNAL, 2023, 469
  • [6] Crosslinked dielectric materials for high-temperature capacitive energy storage
    Tang, Yadong
    Xu, Wenhan
    Niu, Sen
    Zhang, Zhicheng
    Zhang, Yunhe
    Jiang, Zhenhua
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (16) : 10000 - 10011
  • [7] Anisotropic Semicrystalline Homopolymer Dielectrics for High-Temperature Capacitive Energy Storage
    Xu, Wenhan
    Zhou, Chenyi
    Ji, Wenhai
    Zhang, Yunhe
    Jiang, Zhenhua
    Bertram, Florian
    Shang, Yingshuang
    Zhang, Haibo
    Shen, Chen
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024, 63 (24)
  • [8] High-temperature polymer dielectrics with superior capacitive energy storage performance
    Qin, Hongmei
    Song, Jinhui
    Liu, Man
    Zhang, Yibo
    Qin, Shiyu
    Chen, Hang
    Shen, Kangdi
    Wang, Shan
    Li, Qi
    Yang, Quanling
    Xiong, Chuanxi
    CHEMICAL ENGINEERING JOURNAL, 2023, 461
  • [9] Polyimide composites crosslinked by aromatic molecules for high-temperature capacitive energy storage
    Wang, Feng
    Wang, Hao
    Shi, Xiaoming
    Diao, Chunli
    Li, Chaolong
    Li, Weikun
    Liu, Xu
    Zheng, Haiwu
    Huang, Houbing
    Li, Xiaoguang
    CHEMICAL ENGINEERING JOURNAL, 2024, 485
  • [10] Scalable Polyimide-Organosilicate Hybrid Films for High-Temperature Capacitive Energy Storage
    Dong, Jiufeng
    Li, Li
    Qiu, Peiqi
    Pan, Yupeng
    Niu, Yujuan
    Sun, Liang
    Pan, Zizhao
    Liu, Yuqi
    Tan, Li
    Xu, Xinwei
    Xu, Chen
    Luo, Guangfu
    Wang, Qing
    Wang, Hong
    ADVANCED MATERIALS, 2023, 35 (20)