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Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes.

Publication ,  Journal Article
Wang, T; Ock, J; Chen, XC; Wang, F; Li, M; Chambers, MS; Veith, GM; Shepard, LB; Sinnott, SB; Borisevich, A; Chi, M; Bhattacharya, A; Dai, S ...
Published in: Advanced science (Weinheim, Baden-Wurttemberg, Germany)
January 2025

Inorganic fillers play an important role in improving the ionic conductivity of solid composite electrolytes (SCEs) for Li-ion batteries. Among inorganic fillers, perovskite-type lithium lanthanum titanate (LLTO) stands out for its high bulk Li+ conductivity on the order of 10-3 S cm-1 at room temperature. According to a literature survey, the optimal LLTO filler should possess the following characteristics: i) a single-crystal structure to minimize grain boundaries; ii) a small particle size to increase the filler/polymer interface area; iii) a 1D morphology for efficient interface channels; and iv) cubic symmetry to facilitate rapid bulk Li+ diffusion within the filler. However, the synthesis of single crystal, 1D LLTO nanomaterials with cubic symmetry is challenging. Herein, a flux strategy is developed to synthesize La0.5M0.5TiO3 (LMTO, M═Li, Na, and K) single-crystal nanorods with an A-site-disordered, cubic perovskite phase. The flux media promotes the oriented growth of nanorods, prevents nanorods from sintering, and provides multiple alkali metal ion doping at M sites to stabilize the cubic phase. SCEs compositing the Li+-conducting LMTO nanorods as fillers and poly[vinylene carbonate-co-lithium sulfonyl(trifluoromethane sulfonyl)imide methacrylate] matrix exhibit more than twice the conductivity of the neat polymer electrolyte (30.6 vs 14.0 µS cm-1 at 303 K).

Duke Scholars

Published In

Advanced science (Weinheim, Baden-Wurttemberg, Germany)

DOI

EISSN

2198-3844

ISSN

2198-3844

Publication Date

January 2025

Volume

12

Issue

3

Start / End Page

e2408805
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Wang, T., Ock, J., Chen, X. C., Wang, F., Li, M., Chambers, M. S., … Dai, S. (2025). Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes. Advanced Science (Weinheim, Baden-Wurttemberg, Germany), 12(3), e2408805. https://doi.org/10.1002/advs.202408805
Wang, Tao, Jiyoung Ock, X Chelsea Chen, Fan Wang, Meijia Li, Matthew S. Chambers, Gabriel M. Veith, et al. “Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes.Advanced Science (Weinheim, Baden-Wurttemberg, Germany) 12, no. 3 (January 2025): e2408805. https://doi.org/10.1002/advs.202408805.
Wang T, Ock J, Chen XC, Wang F, Li M, Chambers MS, et al. Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes. Advanced science (Weinheim, Baden-Wurttemberg, Germany). 2025 Jan;12(3):e2408805.
Wang, Tao, et al. “Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes.Advanced Science (Weinheim, Baden-Wurttemberg, Germany), vol. 12, no. 3, Jan. 2025, p. e2408805. Epmc, doi:10.1002/advs.202408805.
Wang T, Ock J, Chen XC, Wang F, Li M, Chambers MS, Veith GM, Shepard LB, Sinnott SB, Borisevich A, Chi M, Bhattacharya A, Clément RJ, Sokolov AP, Dai S. Flux Synthesis of A-site Disordered Perovskite La<sub>0.5</sub>M<sub>0.5</sub>TiO<sub>3</sub> (M═Li, Na, K) Nanorods Tailored for Solid Composite Electrolytes. Advanced science (Weinheim, Baden-Wurttemberg, Germany). 2025 Jan;12(3):e2408805.
Journal cover image

Published In

Advanced science (Weinheim, Baden-Wurttemberg, Germany)

DOI

EISSN

2198-3844

ISSN

2198-3844

Publication Date

January 2025

Volume

12

Issue

3

Start / End Page

e2408805