Heterointerface-engineered 2D/2D layered heterojunction with electronic coupling for energy storage

被引:0
作者
Savariraj, Antonysamy Dennyson [1 ]
Marotrao, Kale Amol [2 ]
Sivakumar, Periyasamy [1 ]
Manikandan, Ramu [3 ]
Gangadhar, Lekshmi [4 ]
Kim, Byung Chul [5 ]
Jung, Hyun [1 ]
机构
[1] Dongguk Univ, Dept Chem, Adv Funct Nanohybrid Mat Lab, Seoul Campus, Seoul 04620, South Korea
[2] Inha Univ, Dept Chem, Inharo 100, Incheon 22212, South Korea
[3] Dongguk Univ, Dept Energy & Mat Engn, Seoul Campus, Seoul 04620, South Korea
[4] NanoDot Res Pvt Ltd, Dept Nanotechnol, Nagercoil 629001, India
[5] Sunchon Natl Univ, Dept Adv Components & Mat Engn, 255 Jungang Rro, Suncheon Si 57922, Jellanamdo, South Korea
基金
新加坡国家研究基金会;
关键词
Nucleation mechanism; Cathodic electrodeposition; Interfacial electronic coupling; Heterojunction; Binder-free architectures; CATALYTIC-OXIDATION; DOPED GRAPHENE; PERFORMANCE; SUPERCAPACITOR; NANOPARTICLES; NANOSHEETS;
D O I
10.1016/j.cej.2025.159702
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Co(OH)2 layers were grown on nickel foam by an instantaneous nucleation mechanism regulated by cathodic electrodeposition. Treating Co(OH)2 layers as the template, Ni(OH)2 layers were cladded onto to form Co(OH)2/ Ni(OH)2 heterojunction. The resultant self-supported binder-free architectures with abundant active sites and reduced aggregation facilitate faradaic redox reactions and shorten electron transport distance. The heterointerface-engineered Co(OH)2/Ni(OH)2 architecture with interfacial electronic coupling as electrodes highlighted its merits by delivering an areal capacity of 1965 mC cm- 2 at 1 mA cm- 2, a high specific capacity of 444 C g- 1, and a specific capacitance of 889 F g- 1 at 1 A g- 1. Moreover, the electrode demonstrated its chemical stability and structural endurance, with an 89.5 % retention of specific capacity at the 5000 th cycle. Additionally, the hybrid device assembled with Co(OH)2/Ni(OH)2//activated carbon composition delivered a specific capacity of 181 C g- 1 at 1 A g- 1, a maximum specific energy of 53.1 Wh kg- 1 at 1 A g- 1, and an appreciable specific power of 16.56 kW kg- 1 at 20 A g- 1. The proposed strategy takes advantage of yielding replicated twodimensional sheets (2D) with interfacial electronic coupling, ample active sites, and high synergy between the two layers, which help in designing high-energy electrochemical storage devices.
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页数:15
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