Microwave-assisted facile synthesis of graphitic-C3N4/reduced graphene oxide/MoS2 composite as the bifunctional electrocatalyst for electrochemical water splitting

被引:0
|
作者
Sahoo, Sumanta [1 ]
Al Mahmud, Abdullah [1 ]
Sood, Ankur [1 ]
Dhakal, Ganesh [2 ,3 ]
Tiwari, Santosh K. [4 ]
Zo, Sunmi [1 ]
Kim, Hong Mi [1 ]
Han, Sung Soo [1 ]
机构
[1] Yeungnam Univ, Sch Chem Engn, 280 Daehak Ro, Gyeongbuk 38541, Gyeongsan, South Korea
[2] Southern Univ & A&M Coll, Dept Phys, Baton Rouge, LA 70813 USA
[3] Southern Univ & A&M Coll, Nano Mat Lab, Baton Rouge, LA 70813 USA
[4] Nitte, NMAM Inst Technol, Ctr New Mat & Surface Engn, Dept Chem, Mangalore, India
来源
基金
新加坡国家研究基金会;
关键词
Reduced graphene oxide; MoS2; Hydrogen evolution reaction; Oxygen evolution reaction; HYDROGEN EVOLUTION; PERFORMANCE; NANOSHEETS;
D O I
10.1016/j.jsamd.2024.100843
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Bifunctional electrocatalysts have shown considerable research attention in the field of water splitting in the last few years. The current work reports a simple microwave (MW)-assisted synthetic approach for the fabrication of nanocomposite based on graphitic-C3N4, reduced graphene oxide (rGO), and MoS2. Notably, the ternary composite was synthesized through ultrafast MW irradiation within a short duration by a cost-effective synthetic route. The synthesized composite served as the suitable electrocatalyst for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER). The overpotential of the composite was 172 mV for HER and 380 mV for OER. Moreover, the Tafel slopes for HER and OER were 147 and 97 mV dec-1 for HER and OER, respectively. It is further interesting to note that the composite also displayed admirable stability of 24 h for overall water splitting. Inclusively, the current work demonstrated an efficient rGO-supported MW-assisted inexpensive synthetic approach for the development of 2D bifunctional electrocatalysts.
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页数:9
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