Understanding the spatial configurations of Sm2O3 in ZnO surface-loaded or embedded for the electrocatalytic oxygen evolution reaction

被引:9
作者
Nisa, Mehar Un [1 ]
Gassoumi, Abdelaziz [2 ,3 ]
Alharbi, F. F. [4 ]
Aman, Salma [5 ]
Manzoor, Sumaira [1 ]
机构
[1] Bahauddin Zakariya Univ, Inst Chem Sci, Multan 60800, Pakistan
[2] King Khalid Univ, Fac Sci, Dept Phys, POB 9004, Abha 61413, Saudi Arabia
[3] Univ Tunis El Manar, Fac Sci Tunis, Dept Phys, Lab Phys Matiere Condensee LPMC, Tunis 2092, Tunisia
[4] Princess Nourah Bint Abdulrahman Univ, Coll Sci, Dept Phys, POB 84428, Riyadh 11671, Saudi Arabia
[5] Khwaja Fareed Univ Engn & Informat Technol, Inst Phys, Abu Dhabi Rd, Rahim Yar Khan 64200, Pakistan
关键词
Sm2O3 loaded ZnO; Sm2O3 embedded ZnO; Oxygen evolution reaction; Water splitting; EFFICIENT WATER OXIDATION; NANOSHEETS; NANOSPHERES; GRAPHENE; RICH;
D O I
10.1007/s10971-023-06054-5
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
Recently, the oxygen evolution reaction (OER) has been accelerated with addition of samarium (Sm) to the fabricated electrocatalyst. Notably, the spatial dispersal of Sm in their hosts can impact the ability to use Sm species as additives and improve electrocatalytic performance. This study investigates two distinct catalytic designs in-depth to comprehend the diverse spatial arrangements that influence the features of OER. Sm2O3-loaded ZnO on the surface (Sm-Zn-L) and Sm2O3-embedded ZnO (Sm-Zn-E) are the two possible formations. Sm-Zn-E catalysts possessed a lower overpotential (419 mV for 10 mA cm(-2)), Tafel slope (89 mV dec(-1)) along with good stability up till 40 h and 1000 cycles as compared to Sm-Zn-L (448 mV and 159 mV dec(-1)). This explains entrenched arrangements benefit for OER. Introducing minute clusters of Sm2O3 into the ZnO improves the precise surface area, number of surface flaws, and the efficiency with which the electronic assemblies of the surface-active sites are optimized. Due to this, Sm-Zn-E has a higher OER than Sm-Zn-L. The above information offers a realistic framework for reordering catalysts to increase their spatial performance.
引用
收藏
页码:215 / 225
页数:11
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