Versatile, Adaptable, and Stretchable Electrochromic Energy Storage Systems

被引:0
|
作者
Jafari, Aliakbar [1 ,2 ]
Al-Ostaz, Ahmed [2 ,3 ]
Nouranian, Sasan [1 ,2 ]
机构
[1] Univ Mississippi, Dept Chem Engn, University, MS 38677 USA
[2] Univ Mississippi, Ctr Graphene Res & Innovat, University, MS 38677 USA
[3] Univ Mississippi, Dept Civil Engn, University, MS USA
关键词
battery; electrochromic; energy storage; flexible; stretchable; supercapacitor; SMART WINDOWS; MULTICOLOR; DEVICES; ELECTROLYTES; PERFORMANCE; BATTERY; DESIGN; FILMS;
D O I
10.1002/pat.70144
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Electrochromic energy storage devices (EESDs) have emerged as innovative technologies in energy storage and smart materials, generating considerable interest for numerous applications, such as wearables, smart windows, and color-changing sunglasses. EESDs consist of two primary categories: electrochromic supercapacitors (ESCs) and electrochromic batteries (ECBs). These devices are particularly appreciated for their multifunctional features, which allow them to alter color in response to different charge densities. The performance and efficiency of EESDs rely on three essential components: (I) the current collector or substrate (cc/substrate), which serves as the conductive base for the device; (II) the electrolyte, which supports ion movement and improves overall electrochemical performance; and (III) the electrochromic materials (ECMs), responsible for the color changes and energy storage functions. Careful selection and optimization of these components are crucial for enhancing the devices' efficiency, stability, and lifespan. Advanced flexible and stretchable EESDs have shown significant potential. Their natural flexibility facilitates seamless incorporation into curved surfaces and diverse shapes, making them especially suitable for wearable technologies and other cutting-edge applications. However, this flexibility also brings challenges, including concerns related to delamination, material dissociation, and degradation over time. A thorough investigation of materials for flexible EESDs is essential for progressing energy conversion and storage systems. Grasping these materials is vital for creating sustainable energy solutions and improving smart capabilities.
引用
收藏
页数:26
相关论文
共 50 条
  • [31] Energy Storage Systems The Flywheel Energy Storage
    Siostrzonek, Tomasz
    Pirog, Stanislaw
    Baszynski, Marcin
    2008 13TH INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE, VOLS 1-5, 2008, : 1779 - 1783
  • [32] Structure and material designs of stretchable electrochromic devices
    Wang, Weigao
    Tian, Boqing
    Wu, Majiaqi
    Jian, Maoliang
    Yang, Lianqiao
    COLORATION TECHNOLOGY, 2024, 140 (06) : 809 - 826
  • [33] Fully screen printed stretchable electrochromic displays
    Linderhed, Ulrika
    Petsagkourakis, Ioannis
    Ersman, Peter Andersson
    Beni, Valerio
    Tybrandt, Klas
    FLEXIBLE AND PRINTED ELECTRONICS, 2021, 6 (04):
  • [34] Multivalent-Ion Electrochromic Energy Saving and Storage Devices
    Tong, Zhongqiu
    Zhu, Xing
    Xu, Hongbo
    Li, Zhishan
    Li, Shaoyuan
    Xi, Fengshuo
    Kang, Tianxing
    Ma, Wenhui
    Lee, Chun-Sing
    ADVANCED FUNCTIONAL MATERIALS, 2024,
  • [35] Flexible conjugated polyfurans for bifunctional electrochromic energy storage application
    Yao, Wenqian
    Liu, Peipei
    Liu, Congcong
    Xu, Jingkun
    Lin, Kaiwen
    Kang, Huan
    Li, Meng
    Lan, Xiaoqi
    Jiang, Fengxing
    CHEMICAL ENGINEERING JOURNAL, 2022, 428
  • [36] Design of intrinsically stretchable and highly conductive polymers for fully stretchable electrochromic devices
    Kim, Youngno
    Park, Chanil
    Im, Soeun
    Kim, Jung Hyun
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [37] Flexible and Stretchable Energy Storage: Recent Advances and Future Perspectives
    Liu, Wei
    Song, Min-Sang
    Kong, Biao
    Cui, Yi
    ADVANCED MATERIALS, 2017, 29 (01)
  • [38] Self-healing flexible/stretchable energy storage devices
    Tong, Xiaoling
    Tian, Zhengnan
    Sun, Jingyu
    Tung, Vincent
    Kaner, Richard B.
    Shao, Yuanlong
    MATERIALS TODAY, 2021, 44 : 78 - 104
  • [39] Recent progress in integrated functional electrochromic energy storage devices
    Wang, Hao
    Yao, Chang-Jiang
    Nie, Hai-Jing
    Yang, Li
    Mei, Shilin
    Zhang, Qichun
    JOURNAL OF MATERIALS CHEMISTRY C, 2020, 8 (44) : 15507 - 15525
  • [40] Electrochromic Energy-Storage Devices Based on Inorganic Materials'
    Wu, Zhan
    Li, Xiaohan
    Qian, Aowei
    Yang, Jiayu
    Zhang, Wenkui
    Zhang, Jun
    PROGRESS IN CHEMISTRY, 2020, 32 (06) : 792 - 802