Fabrication of PANI supported magnesium/cobalt spinel ternary oxide as an efficient oxygen evolution reaction and removal of organic pollutant

被引:9
|
作者
Karami, Abdulnasser M. [1 ]
Jabbour, Karam [2 ]
Manzoor, Sumaira [3 ]
Nisa, Mehar Un [3 ]
Ashiq, Muhammad Faheem [3 ]
Ansari, Mohammad Numair [3 ]
Ehsan, Muhammad Fahad [4 ]
Ashiq, Muhammad Naeem [3 ]
机构
[1] King Saud Univ, Coll Sci, Dept Chem, Riyadh 11451, Saudi Arabia
[2] Amer Univ Middle East, Coll Engn & Technol, Egaila 54200, Kuwait
[3] Bahauddin Zakariya Univ, Inst Chem Sci, Multan 60800, Pakistan
[4] Northeastern Univ, Dept Civil & Environm Engn, Boston, MA 02115 USA
关键词
Photodegradation; Congo red; Electrocatalyst; PANI; OER; REDUCTION; ELECTROCATALYSTS; NANOPARTICLES; CATALYSTS; EQUATION; ZNCO2O4; ORIGIN;
D O I
10.1016/j.ceramint.2023.10.012
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The advancement of potent, highly efficient and reasonably priced catalysts is necessary for the production of hydrogen from a renewable source and removal of organic contaminants from waste water. In this study, we demonstrated the dynamic proportion capability of the hydrothermally condensed polymorphic electrocatalyst MgCo2O4/PANI nanocomposite. The composite material has higher surface area of 264 m2 g-1 and electrochemical active surface area of 299.5 cm2. The MgCo2O4/PANI nanocomposite exhibits 201 mV of lower overpotential to attain at 10 mA cm-2 of current density and 66 mV dec-1 of reduced Tafel value. The long-term viability for 50 h is demonstrated using MgCo2O4/PANI at 10 mA cm-2 for O2 production. The findings of this study demonstrated that MgCo2O4/PANI nanocomposite is an affordable, non-precious material, which can be utilized to generate H2 on a large scale. On the other hand, the resultant material was then applied for the Congo Red (CR) dye photodegradation irradiated with visible light with degradation efficiency of 98%. The comparison of nanostructured MgCo2O4/PANI demonstrates that the electrochemical performance for water oxidation processes as well as degradation process is significantly higher than the pure form. The exceptional catalytic performance of MgCo2O4/PANI nanocomposite is due to the large quantity of active sites, some immense oxygen vacancies, and a fast electron transfer rate, with a steady oxygen generating stability of 1500 cycles confirm the endurance of MgCo2O4/PANI nanoarrays, which is beneficial for future industrial application.
引用
收藏
页码:40403 / 40413
页数:11
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