Revealing the Mechanism of Ni Vacancies on Ion Storage, Diffusion Kinetics, and Electrochromic Performance of Nickel Oxide Electrodes

被引:0
|
作者
Zhao, Fangyuan [1 ]
Chen, Yao [1 ]
Shi, Guohua [2 ]
Liu, Qiying [2 ]
Liu, Yong [1 ,3 ]
Han, Gaorong [1 ,4 ]
机构
[1] Zhejiang Univ, Sch Mat Sci & Engn, State Key Lab Silicon Mat, Hangzhou 310058, Peoples R China
[2] Weihai CNG New Mat Technolgy R&D Co Ltd, Weihai 264299, Peoples R China
[3] Shanxi Zheda Inst Adv Mat & Chem Engn, Taiyuan 030001, Shanxi, Peoples R China
[4] Zhejiang Univ, Ningbo Innovat Ctr, Ningbo 315100, Peoples R China
关键词
electrochromic; ion diffusion kinetics; ion storage; Ni vacancy; nickel oxide; ENERGY; SUPERCAPACITOR; STABILITY; DEVICE; FILMS;
D O I
10.1002/smll.202411995
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Solar radiation can be dynamically regulated by the electrochromic smart window, showing great potential in reducing building energy consumption. As one of the most paramount inorganic electrochromic materials, NiO remains the elusive intricacies of the electrochromic process, particularly regarding the functional mechanisms of defects. Here, the mechanism of Ni vacancies (VNi) on the ionic storage, diffusion kinetics, and electrochromic performance are systematically investigated. The active VNi provides ion storage sites and promotes the transport of lithium ion (Li+) by forming diffusion channels, increasing the ion storage capacity from 2.12 to 4.90 mC cm-2. By introducing sub-gap absorptions, VNi increases the NiO's optical modulation from 14.4% to 30.3% with excellent cyclic stability (retain 87.4% after 4000 cycles). In contrast, the nonactive VNi barely contributes to the ion storage and electrochromic performance because of a high diffusion energy barrier, and causing low transmittance in the bleached state. Furthermore, VNi enables electrochromic devices to exhibit superior transmittance modulation and response speed, but nonactive VNi negatively affects the transparency in the bleached state. These results provide valuable guidance for building high-quality NiO electrodes through defect engineering and developing high-performing NiO-based electrochromic devices.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Coral?Like Yolk–Shell?Structured Nickel Oxide/Carbon Composite Microspheres for High?Performance Li?Ion Storage Anodes
    Min Su Jo
    Subrata Ghosh
    Sang Mun Jeong
    Yun Chan Kang
    Jung Sang Cho
    Nano-Micro Letters, 2019, (01) : 46 - 63
  • [42] Vacancies Revitalized Ni3ZnC0.7 Bimetallic Carbide Hybrid Electrodes with Multiplied Charge-Storage Capability for High-Capacity and Stable-Cyclability Lithium-Ion Storage
    Song, Huawei
    Su, Jian
    Wang, Chengxin
    ACS APPLIED ENERGY MATERIALS, 2018, 1 (09): : 5008 - +
  • [43] 3D nanosheet arrays structure oxygen vacancies modulated lithium manganese oxide on Ni foam for high performance lithium ion capacitor
    Yao, Di
    Xia, Xifeng
    Wu Lei
    Hao, Qingli
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [44] Carbon coated and oxygen vacancies incorporated Wadsley-Roth phase molybdenum niobium oxide for high-performance lithium-ion storage
    Liang, Hao
    Lu, Yidan
    Yang, Rongzhang
    Lu, Fengqi
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2024, 966
  • [45] Efficient Extraction of Ni, Cu and Co from Mixed Oxide-Sulfide Nickel Concentrate by Sodium Chloride Roasting: Behavior, Mechanism and Kinetics
    Zhong, Peng
    Mu, Wenning
    Sun, Weisong
    Zhou, Yuanhang
    Yang, Ruimin
    Wang, Qing
    Lei, Xuefei
    Luo, Shaohua
    METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, 2024, 55 (03): : 1896 - 1909
  • [46] Enhanced Li-Ion Diffusion and Cycling Stability of Ni-Free High-Entropy Spinel Oxide Anodes with High-Concentration Oxygen Vacancies
    Xiao, Bin
    Wu, Gang
    Wang, Tongde
    Wei, Zhengang
    Xie, Zelin
    Sui, Yanwei
    Qi, Jiqiu
    Wei, Fuxiang
    Zhang, Xiahui
    Tang, Lin-bo
    Zheng, Jun-chao
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (02) : 2792 - 2803
  • [47] Exploration of the zinc storage mechanism and kinetics of vanadium sulfides/reduced graphene oxide composites for aqueous zinc-ion battery cathodes
    Ju, Bobae
    Song, Hee Jo
    Yoon, Hyunseok
    Kim, Woong-Ju
    Park, Sungwoo
    Lee, Jin Bae
    Kim, Dong-Wan
    ADVANCED COMPOSITES AND HYBRID MATERIALS, 2025, 8 (02)
  • [48] Heterojunction Vacancies-Promoted High Sodium Storage Capacity and Fast Reaction Kinetics of the Anodes for Ultra-High Performance Sodium-Ion Batteries
    Zheng, Hui
    Ma, Dakai
    Pei, Maojun
    Lin, Chenkai
    Liu, Yao
    Deng, Shuqi
    Qiu, Ruoxue
    Luo, Yiyuan
    Yan, Wei
    Zhang, Jiujun
    ADVANCED FUNCTIONAL MATERIALS, 2025, 35 (01)
  • [49] Mixed ternary metal MFeCo (M = Al, Mg, Cu, Zn, or Ni) oxide electrodes for high-performance energy storage devices
    Yazdi, Morteza Saghafi
    Hosseini, Seied Ali
    Karami, Zeynodin
    Olamaee, Ali
    Abedini, Mohammad
    Moghanian, Amirhossein
    IONICS, 2021, 27 (09) : 3777 - 3791
  • [50] Mixed ternary metal MFeCo (M = Al, Mg, Cu, Zn, or Ni) oxide electrodes for high-performance energy storage devices
    Morteza Saghafi Yazdi
    Seied Ali Hosseini
    Zeynodin Karami
    Ali Olamaee
    Mohammad Abedini
    Amirhossein Moghanian
    Ionics, 2021, 27 : 3777 - 3791