2023
DOI: 10.1016/j.ceramint.2023.05.141
|View full text |Cite
|
Sign up to set email alerts
|

Experimental and DFT analysis of structural, optical, and electrical properties of Li3xLa2/3-xTiO3 (3x = 0.1, 0.3 and 0.5) solid electrolyte

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
2
1
1

Citation Types

3
1
0

Year Published

2024
2024
2024
2024

Publication Types

Select...
7

Relationship

0
7

Authors

Journals

citations
Cited by 10 publications
(4 citation statements)
references
References 64 publications
3
1
0
Order By: Relevance
“…A band gap for Li 0.33 La 0.56 TiO 3 , Li 0.167 La 0.61 TiO 3 , and Ti- and O-deficient Li 0.33 La 0.56 TiO 3 , calculated from the density of states (DOS), were 1.67, 1.92, and 1.96 eV, respectively (Figure S11). Similar values were also obtained by Chouiekh et al (2023) …”
Section: Resultssupporting
confidence: 91%
See 2 more Smart Citations
“…A band gap for Li 0.33 La 0.56 TiO 3 , Li 0.167 La 0.61 TiO 3 , and Ti- and O-deficient Li 0.33 La 0.56 TiO 3 , calculated from the density of states (DOS), were 1.67, 1.92, and 1.96 eV, respectively (Figure S11). Similar values were also obtained by Chouiekh et al (2023) …”
Section: Resultssupporting
confidence: 91%
“…A band gap for Li 0.33 La 0.56 TiO 3 , Li 0.167 La 0.61 TiO 3 , and Ti-and O-deficient Li 0.33 La 0.56 TiO 3 , calculated from the density of states (DOS), were 1.67, 1.92, and 1.96 eV, respectively (Figure S11). Similar values were also obtained by Chouiekh et al (2023). 46 The in Figure 5), the formation of Li 2 La 2 Ti 3 O 10 phase is energetically more favorable compared to the LLTO perovskite (eqs 5−7), and therefore, microstructure development starts with the formation of grains that contain dense sequences of the layered RP-type Li 2 La 2 Ti 3 O 10 phase (Figure 2).…”
Section: Recrystallization Of Rp-defects To Llto Perovskitesupporting
confidence: 82%
See 1 more Smart Citation
“…Their excellent extensibility and toughness render them highly promising in the field of flexible batteries. However, challenges such as low ionic conductivity, poor structural stability, and flammability must be addressed. , Oxide-based SEs are primarily divided into four categories: perovskite-type represented by Li 3 x La 2/3– x TiO 3 , , NASICON-type represented by Li 1+ x Al x Ti 2– x (PO 4 ) 3 , LISICON-type represented by Li 2+2 x Zn 1– x SiO 4 , and garnet-type represented by Li 7 La 3 Zr 2 O 12 (LLZO). Oxide-based high SEs exhibit great electrical ionic conducting properties, a wide electrochemical stability window (ESW), and superior strength of machinery, making them the most hopeful cases for practical application among SEs. , …”
Section: Introductionmentioning
confidence: 99%