Rechargeable Aqueous Electrochromic Batteries Utilizing Ti-Substituted Tungsten Molybdenum Oxide Based Zn2+ Ion Intercalation Cathodes

被引:302
作者
Li, Haizeng [1 ]
McRae, Liam [1 ]
Firby, Curtis J. [1 ]
Elezzabi, Abdulhakem Y. [1 ]
机构
[1] Univ Alberta, Dept Elect & Comp Engn, Ultrafast Opt & Nanophoton Lab, Edmonton, AB T6G 2V4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
aqueous zinc-ion battery; electrochromic batteries; electrochromics; smart windows; NANOWIRES; MAGNESIUM; STORAGE; DYNAMICS; WO3; LI;
D O I
10.1002/adma.201807065
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Batteries are used in every facet of human lives. Desirable battery architectures demand high capacity, rechargeability, rapid charging speed, and cycling stability, all within an environmentally friendly platform. Many applications are limited by opaque batteries; thus, new functionalities can be unlocked by introducing transparent battery architectures. This can be achieved by incorporating electrochromic and energy storage functions. Transparent electrochromic batteries enable new applications, including variable optical attenuators, optical switches, addressable displays, touch screen devices, and most importantly smart windows for energy-efficient buildings. However, this technology is in the incipient state due to limited electrochromic materials having satisfactory optical contrast and capacity. As such, triggering electrochromism via Zn2+ intercalation is advantageous: Zn is abundant, safe, easily processed in aqueous electrolytes and provides two electrons during redox reactions. Here, enhanced Zn2+ intercalation is demonstrated in Ti-substituted tungsten molybdenum oxide, yielding improved capacity and electrochromic performance. This technique is employed to engineer cathodes exhibiting an areal capacity of 260 mAh m(-2) and high optical contrast (76%), utilized in the fabrication of aqueous Zn-ion electrochromic batteries. Remarkably, these batteries can be charged by external voltages and self-recharged by spontaneously extracting Zn2+, providing a new technology for practical electrochromic devices.
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页数:9
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共 55 条
  • [1] ELECTROCHEMICAL FORMATION OF OXYGEN-DEFICIENT MOLYBDENUM OXIDE
    ANBANANTHAN, N
    RAO, KN
    VENKATESAN, VK
    [J]. APPLIED SURFACE SCIENCE, 1993, 72 (02) : 189 - 194
  • [2] CHEMICAL INTERCALATION OF MAGNESIUM INTO SOLID HOSTS
    BRUCE, PG
    KROK, F
    NOWINSKI, J
    GIBSON, VC
    TAVAKKOLI, K
    [J]. JOURNAL OF MATERIALS CHEMISTRY, 1991, 1 (04) : 705 - 706
  • [3] Inkjet Printed Large Area Multifunctional Smart Windows
    Cai, Guofa
    Darmawan, Peter
    Cheng, Xing
    Lee, Pooi See
    [J]. ADVANCED ENERGY MATERIALS, 2017, 7 (14)
  • [4] Next-Generation Multifunctional Electrochromic Devices
    Cai, Guofa
    Wang, Jiangxin
    Lee, Pooi See
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2016, 49 (08) : 1469 - 1476
  • [5] Designing PbSe nanowires and nanorings through oriented attachment of nanoparticles
    Cho, KS
    Talapin, DV
    Gaschler, W
    Murray, CB
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (19) : 7140 - 7147
  • [6] Chemically Preintercalated Bilayered KxV2O5•nH2O Nanobelts as a High-Performing Cathode Material for K-Ion Batteries
    Clites, Mallory
    Hart, James L.
    Taheri, Mitra L.
    Pomerantseva, Ekaterina
    [J]. ACS ENERGY LETTERS, 2018, 3 (03): : 562 - 567
  • [7] Tungsten Oxide Materials for Optoelectronic Applications
    Cong, Shan
    Geng, Fengxia
    Zhao, Zhigang
    [J]. ADVANCED MATERIALS, 2016, 28 (47) : 10518 - 10528
  • [8] Single-Crystalline Tungsten Oxide Quantum Dots for Fast Pseudocapacitor and Electrochromic Applications
    Cong, Shan
    Tian, Yuyu
    Li, Qingwen
    Zhao, Zhigang
    Geng, Fengxia
    [J]. ADVANCED MATERIALS, 2014, 26 (25) : 4260 - 4267
  • [9] Deposition and drying dynamics of liquid crystal droplets
    Davidson, Zoey S.
    Huang, Yongyang
    Gross, Adam
    Martinez, Angel
    Still, Tim
    Zhou, Chao
    Collings, Peter J.
    Kamien, Randall D.
    Yodh, A. G.
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [10] Capillary flow as the cause of ring stains from dried liquid drops
    Deegan, RD
    Bakajin, O
    Dupont, TF
    Huber, G
    Nagel, SR
    Witten, TA
    [J]. NATURE, 1997, 389 (6653) : 827 - 829