scholarly journals Theoretical Investigation of Proton Diffusion in Dion–Jacobson Layered Perovskite RbBiNb2O7

Nanomaterials ◽  
2021 ◽  
Vol 11 (8) ◽  
pp. 1953
Author(s):  
Jing Shi ◽  
Chang Han ◽  
Haibo Niu ◽  
Youzhang Zhu ◽  
Sining Yun

Perovskite materials are considered to be promising electrolyte membrane candidates for electrochemical applications owing to their excellent proton- or oxide-ion-conducting properties. RbBiNb2O7 is a double-layered Dion–Jacobson perovskite oxide, with Pmc21 symmetry. In this study, the electronic structure and proton-diffusion properties of bulk RbBiNb2O7 were systematically investigated using first-principles calculations. The unique layered crystal structure of RbBiNb2O7 plays a crucial role in proton storage and proton conductivity. Different proton-diffusion steps in RbBiNb2O7 were considered, and the activation energies of the relevant diffusion steps were evaluated using the climbing image-nudged elastic band (CI-NEB) technique. The proton diffusion in RbBiNb2O7 presents a two-dimensional layered characteristic in the a-b plane, owing to its layered crystalline nature. According to the transition state calculations, our results show that the bulk RbBiNb2O7 exhibits good proton-transport behavior in the a-b plane, which is better than many perovskite oxides, such as CaTiO3, CaZrO3, and SrZrO3. The proton diffusion in the Rb–O and Nb–O layers is isolated by a higher energy barrier of 0.86 eV. The strong octahedral tilting in RbBiNb2O7 would promote proton transport. Our study reveals the microscopic mechanisms of proton conductivity in Dion–Jacobson structured RbBiNb2O7, and provides theoretical evidence for its potential application as an electrolyte in solid oxide fuel cells (SOFCs).

2008 ◽  
Vol 388 ◽  
pp. 69-72 ◽  
Author(s):  
Takaaki Fukushima ◽  
Shinya Suzuki ◽  
Masaru Miyayama

Lithium-ion conducting properties were investigated for a layered perovskite oxide Li2SrTa2O7 (LST) and defect-controlled LST, synthesized via solid state reactions. The ionic conductivities of A-site solid solutions Li2[Sr-(La2/3□1/3)-(La1/2Li1/2)]Ta2O7 (□ denotes vacancy.) suggested that lithium ions migrate in the Li-layer. The conductivity of Li-deficient (Li2-z□z)(LazSr1-z)Ta2O7 increased dramatically from 4.2 × 10-6 S cm-1 (z = 0, LST) to 1.6 × 10-3 S cm-1 (z = 0.2) at 400°C with increasing Li-vacancy concentration. This result obviously indicates that the conductivity of LST originate from the Li migration through vacancies in the Li-layer.


2019 ◽  
Vol 1 (13) ◽  
pp. 81-89
Author(s):  
L.V Fomina ◽  
E.A. Malakhova ◽  
O.V. Lebedeva ◽  
Yu.N Pozhidaev ◽  
S.A Beznosyuk ◽  
...  

2018 ◽  
Vol 54 (58) ◽  
pp. 8092-8095 ◽  
Author(s):  
Lijie Li ◽  
Lipeng He ◽  
Binghua Wang ◽  
Peng Ge ◽  
Lei Jing ◽  
...  

Secondary dialkylammonium salt/crown ether [2]pseudorotaxanes can be confined into two-dimensional nanochannels, leading to remarkable enhancements and rational control of proton conductivity.


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