perovskite oxides
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2022 ◽  
Vol 9 ◽  
Author(s):  
Jiabiao Yan ◽  
Mingkun Xia ◽  
Chenguang Zhu ◽  
Dawei Chen ◽  
Fanglin Du

Perovskite oxides have been established as a promising kind of catalyst for alkaline oxygen evolution reactions (OER), because of their regulated non-precious metal components. However, the surface lattice is amorphous during the reaction, which gradually decreases the intrinsic activity and stability of catalysts. Herein, the precisely control tungsten atoms substituted perovskite oxides (Pr0.5Ba0.5Co1-xWxO3-δ) nanowires were developed by electrostatic spinning. The activity and Tafel slope were both dependent on the W content in a volcano-like fashion, and the optimized Pr0.5Ba0.5Co0.8W0.2O3-δ exhibits both excellent activity and superior stability compared with other reported perovskite oxides. Due to the outermost vacant orbitals of W6+, the electronic structure of cobalt sites could be efficiently optimized. Meanwhile, the stronger W-O bond could also significantly improve the stability of latticed oxide atoms to impede the generation of surface amorphous layers, which shows good application value in alkaline water splitting.


2022 ◽  
Author(s):  
Feng Dong ◽  
Chen Hai Sheng ◽  
zhengang Dong ◽  
Xiaona Du ◽  
Wen Chen ◽  
...  

Author(s):  
Samantha L. Millican ◽  
Ann M. Deml ◽  
Meagan Papac ◽  
Andriy Zakutayev ◽  
Ryan O’Hayre ◽  
...  

Author(s):  
Congcong Wang ◽  
Youqiang Huang ◽  
Esmaeil Heydari ◽  
Xiaolei Yang ◽  
Shiqing Xu ◽  
...  

Author(s):  
Nandarapu Purushothamreddy ◽  
Rompivalasa Santhosh ◽  
Suresh Thogiti ◽  
Muniramaiah Reddivari ◽  
Paul Joseph ◽  
...  

The ternary perovskite oxides are potential candidates as stand-in electron transport layer (ETL) materials to supersede the conventional binary TiO2 in dye-sensitized solar cells (DSSCs). Here, we report the synthesis...


Author(s):  
Changhai Liu ◽  
Dingwei Ji ◽  
Hong Shi ◽  
Zhenyu Wu ◽  
Hui Huang ◽  
...  

Perovskite oxides (ABO3) as electrocatalysts applied for oxygen evolution reaction (OER) have been studied for decades due to its high flexibility and adjustability for electronic structures. Herein, a series of...


2022 ◽  
Vol 281 ◽  
pp. 119893
Author(s):  
Zheng Zhu ◽  
Shipeng Wan ◽  
Qian Lu ◽  
Qin Zhong ◽  
Yunxia Zhao ◽  
...  

2021 ◽  
Author(s):  
AMRANI Bouhalouane ◽  
Djilali BENDJEBBOUR ◽  
Tayeb SEDDIK ◽  
Mohamed Walid MOHAMED ◽  
driss khdoja

Abstract Double perovskite oxides have gained tremendous attention in material science and device technology due to their facile synthesis and exceptional physical properties. In this paper, we elucidate the origin of magnetization in non magnetic double perovskite oxides Sr2MSbO6 (M=Al, Ga) induced by non-magnetic 2p-impurities (C and N) substituted. The calculations were done within the full potential linearized augmented plane wave method (FP-LAPW) in the framework of the density functional theory (DFT). The exchange-correlation potential is evaluated using the generalized gradient approximation (GGA) of Perdew–Burke–Ernzerhof (PBE) and the modified Becke and Johnson (mBJ-GGA). Regarding structural properties of undoped double perovskites Sr2MSbO6 (M=Al, Ga), we found that the lattice constants and oxygen positions are in rational accord with the experimental results. Furthermore, both of the examined compounds are brittle in nature with isotropic character. For Sr2AlSbO6 we have got the values of energy gap equal to 1.9 eV and 3.7 eV within the GGA and the mBJ-GGA, respectively. However for Sr2GaSbO6 the values of energy gap obtained in GGA and mBJ-GGA are equal to 0.8 eV and 2.9 eV, respectively. Finally, spin-polarized calculations reveal that the doping C and N can lead to drastic changes in the magneto-electronic properties of the semiconducting Sr2MSbO6 matrix with the integer magnetic moment of 6.00 µB and exhibit half-metallic properties. The origin of ferromagnetism can be attributed to the spin–split impurity bands inside the energy gap of the semiconducting Sr2MSbO6 matrix. These results may help experimentalists in synthesizing new double perovskites for spintronic applications.


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