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Published in: Journal of Sol-Gel Science and Technology 3/2022

05-05-2022 | Invited Paper: Nano-structured materials (particles, fibers, colloids, composites, etc.)

Hydrothermal synthesis of perovskite-type solid electrolyte nanoplate

Authors: Ken-ichi Mimura, Naoki Hamao, Hiroki Itasaka, Zheng Liu, Koichi Hamamoto

Published in: Journal of Sol-Gel Science and Technology | Issue 3/2022

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Abstract

Perovskite-type (A,La)TiO3 (A: Li or Na) nanoplates were synthesized by hydrothermal reaction using titanium bis(ammonium lactate) dihydroxide as a starting material at 260 °C for 48 h. When NaOH was used as a mineralizer, perovskite single phase was obtained, but when LiOH was used, impurities including lanthanum hydroxide were obtained, and no perovskite phase was obtained. Scanning transmission electron microscopy (STEM) analyses demonstrated that perovskite NPs have plate-like morphology with plane index of {100}. Energy dispersive X-ray spectroscopy (EDX) revealed that Na partly occupied in A-site of perovskite structure. The nanoplates were pressed into a pellet and sintered at 1000 °C. The pellet exhibited an ionic conductivity of 3.8 × 10−6 S/cm.

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Literature
1.
go back to reference Cohen RE (1992) Origin of ferroelectricity in perovskite oxides. Nature 358:136–138CrossRef Cohen RE (1992) Origin of ferroelectricity in perovskite oxides. Nature 358:136–138CrossRef
2.
go back to reference Toda K, Kurita S, Sato M (1996) New layered perovskite compounds, LiLaTiO4 and LiEuTiO4. J Ceram Soc Jpn 104:140–142CrossRef Toda K, Kurita S, Sato M (1996) New layered perovskite compounds, LiLaTiO4 and LiEuTiO4. J Ceram Soc Jpn 104:140–142CrossRef
3.
go back to reference Pham QN, Bohnke C, Bohnke O (2004) Effect of surface treatments on Li0.30Ln0.57TiO3 (Ln = La, Nd) perovskite ceramics: an X-ray photoelectron spectroscopy study. Surf Sci 572:375–384CrossRef Pham QN, Bohnke C, Bohnke O (2004) Effect of surface treatments on Li0.30Ln0.57TiO3 (Ln = La, Nd) perovskite ceramics: an X-ray photoelectron spectroscopy study. Surf Sci 572:375–384CrossRef
4.
go back to reference Inoue T, Yamada K (2017) Economic evaluation toward zero CO2 emission power generation system after 2050 in Japan. Energy Procedia 142:2761–2766CrossRef Inoue T, Yamada K (2017) Economic evaluation toward zero CO2 emission power generation system after 2050 in Japan. Energy Procedia 142:2761–2766CrossRef
5.
go back to reference Thangadurai V, Narayanan S, Pinzaru D (2014) Garnet-type solid-state fast Li ion conductors for Li batteries: critical review. Chem Soc Rev 43:4714CrossRef Thangadurai V, Narayanan S, Pinzaru D (2014) Garnet-type solid-state fast Li ion conductors for Li batteries: critical review. Chem Soc Rev 43:4714CrossRef
6.
go back to reference Hamao N, Yamaguchi Y, Mimura K, Hamamoto K (2021) Densification of garnet-type electrolyte thin sheets by cold sintering. Chem Lett 50:1784–1786CrossRef Hamao N, Yamaguchi Y, Mimura K, Hamamoto K (2021) Densification of garnet-type electrolyte thin sheets by cold sintering. Chem Lett 50:1784–1786CrossRef
7.
go back to reference Inaguma Y, Liquan C, Itoh M, Nakamura T, Uchida T, Ikuta H, Wakihara M (1993) High ionic conductivity in lithium lanthanum titanate. Solid State Comm 86:689–693CrossRef Inaguma Y, Liquan C, Itoh M, Nakamura T, Uchida T, Ikuta H, Wakihara M (1993) High ionic conductivity in lithium lanthanum titanate. Solid State Comm 86:689–693CrossRef
8.
go back to reference Stramare S, Thangadurai V, Weppner W (2003) Lithium lanthanum titanates: a review. Chem Mater 15:3974–3990CrossRef Stramare S, Thangadurai V, Weppner W (2003) Lithium lanthanum titanates: a review. Chem Mater 15:3974–3990CrossRef
9.
go back to reference Chen CH, Amine K (2001) Ionic conductivity, lithium insertion and extraction of lanthanum lithium titanate. Solid State Ion 144:51–57CrossRef Chen CH, Amine K (2001) Ionic conductivity, lithium insertion and extraction of lanthanum lithium titanate. Solid State Ion 144:51–57CrossRef
10.
go back to reference Zhang Y, Chen F, Tu R, Shen Q, Zhang L (2004) Field assisted sintering of dense Al-substituted cubic phase Li7La3Zr2O12 sold electrolytes. J Power Sources 268:960–964CrossRef Zhang Y, Chen F, Tu R, Shen Q, Zhang L (2004) Field assisted sintering of dense Al-substituted cubic phase Li7La3Zr2O12 sold electrolytes. J Power Sources 268:960–964CrossRef
11.
go back to reference Romero M, Faccio R, Vázquez S, Davyt S, Mombrú ÁW (2016) Experimental and theoretical Raman study on the structure and microstructure of Li0.30La0.57TiO3 electrolyte prepared by the sol-gel method in acetic medium. Ceram Int 42:15414–15422CrossRef Romero M, Faccio R, Vázquez S, Davyt S, Mombrú ÁW (2016) Experimental and theoretical Raman study on the structure and microstructure of Li0.30La0.57TiO3 electrolyte prepared by the sol-gel method in acetic medium. Ceram Int 42:15414–15422CrossRef
12.
go back to reference Dang F, Mimura K, Kato K, Imai H, Wada S, Haneda H, Kuwabara M (2012) In situ growth BaTiO3 nanocubes and their superlattice from an aqueous process. Nanoscale 4:1344–1349CrossRef Dang F, Mimura K, Kato K, Imai H, Wada S, Haneda H, Kuwabara M (2012) In situ growth BaTiO3 nanocubes and their superlattice from an aqueous process. Nanoscale 4:1344–1349CrossRef
13.
go back to reference Mimura K, Ma Q, Kato K (2016) Synthesis and characterization of barium titanate-based solid solution nanocubes. J Ceram Soc Jpn 124:639–643CrossRef Mimura K, Ma Q, Kato K (2016) Synthesis and characterization of barium titanate-based solid solution nanocubes. J Ceram Soc Jpn 124:639–643CrossRef
14.
go back to reference Mimura K, Liu Z, Itasaka H, Kato K (2020) Hydrothermal synthesis of A-site substituted BaTiO3 nanocubes. J Ceram Soc Jpn 128:475–480CrossRef Mimura K, Liu Z, Itasaka H, Kato K (2020) Hydrothermal synthesis of A-site substituted BaTiO3 nanocubes. J Ceram Soc Jpn 128:475–480CrossRef
15.
go back to reference Mimura K, Liu Z, Itasaka H, Lin Y-C, Suenaga K, Kato K (2021) One-step synthesis of BaTiO3/CaTiO3 core-shell nanocubes by hydrothermal reaction. J Asian Ceram Soc 9:359–365CrossRef Mimura K, Liu Z, Itasaka H, Lin Y-C, Suenaga K, Kato K (2021) One-step synthesis of BaTiO3/CaTiO3 core-shell nanocubes by hydrothermal reaction. J Asian Ceram Soc 9:359–365CrossRef
16.
go back to reference Mimura K, Kato K (2013) Characteristics of barium titanate nanocube ordered assembly thin films fabricated by dip-coating method, Jpn. J Appl Phys 52:06KC06CrossRef Mimura K, Kato K (2013) Characteristics of barium titanate nanocube ordered assembly thin films fabricated by dip-coating method, Jpn. J Appl Phys 52:06KC06CrossRef
17.
go back to reference Mimura K, Kato K (2014) Enhanced dielectric properties of BaTiO3 nanocube assembled film in metal-insulator-metal capacitor structure. Appl Phys Express 7:061501CrossRef Mimura K, Kato K (2014) Enhanced dielectric properties of BaTiO3 nanocube assembled film in metal-insulator-metal capacitor structure. Appl Phys Express 7:061501CrossRef
18.
go back to reference Mimura K, Kato K (2018) Dielectric properties of barium zirconate titanate nanocube 3D-ordered assemblies. J Ceram Soc Jpn 156:321–325CrossRef Mimura K, Kato K (2018) Dielectric properties of barium zirconate titanate nanocube 3D-ordered assemblies. J Ceram Soc Jpn 156:321–325CrossRef
19.
go back to reference Bohnke O (2008) The fast lithium-ion conducting oxides Li3xLa2/3-xTiO3 from fundamentals to application. Solid State Ion 179:9–15CrossRef Bohnke O (2008) The fast lithium-ion conducting oxides Li3xLa2/3-xTiO3 from fundamentals to application. Solid State Ion 179:9–15CrossRef
20.
go back to reference Kravchyk KV, Brotons G, Belous AG, Bohnke O (2014) Li3xLa2/3-xTiO3 nanoparticles with different morphologies and self-organization, obtained from simple solution precipitation methods. Mater Lett 137:182–187CrossRef Kravchyk KV, Brotons G, Belous AG, Bohnke O (2014) Li3xLa2/3-xTiO3 nanoparticles with different morphologies and self-organization, obtained from simple solution precipitation methods. Mater Lett 137:182–187CrossRef
21.
go back to reference Lin X, Wang H, Du H, Xiong X, Qu B, Guo Z, Chu D (2016) Growth of lithium lanthanum titanate nanosheets and their application in lithium-ion batteries. ACS Appl Mater Interfaces 8:1486–1492CrossRef Lin X, Wang H, Du H, Xiong X, Qu B, Guo Z, Chu D (2016) Growth of lithium lanthanum titanate nanosheets and their application in lithium-ion batteries. ACS Appl Mater Interfaces 8:1486–1492CrossRef
23.
go back to reference Reaney IM, Colla EL, Setter N (1994) Dielectric and structural characteristics of Ba- and Sr-based complex perovskite as a function of tolerance factor, Jpn. J Appl Phys 33:3984–3990CrossRef Reaney IM, Colla EL, Setter N (1994) Dielectric and structural characteristics of Ba- and Sr-based complex perovskite as a function of tolerance factor, Jpn. J Appl Phys 33:3984–3990CrossRef
24.
go back to reference Ito M, Inaguma Y, Jung WH, Chen L, Nakamura T (1994) High lithium ion conductivity in the perovskite-type compounds Ln1/2Li1/2TiO3 (Ln = La, Pr, Nd, Sm). Solid State Ion 70/71:203–207CrossRef Ito M, Inaguma Y, Jung WH, Chen L, Nakamura T (1994) High lithium ion conductivity in the perovskite-type compounds Ln1/2Li1/2TiO3 (Ln = La, Pr, Nd, Sm). Solid State Ion 70/71:203–207CrossRef
25.
go back to reference BD Cullity, Elements of X-ray diffraction, 2nd ed., Addison-Wesley, Reading, (1978) 284. BD Cullity, Elements of X-ray diffraction, 2nd ed., Addison-Wesley, Reading, (1978) 284.
26.
go back to reference Kawai H, Kuwano J (1994) Lithium ion conductivity of a-site deficient perovskite solid solution La0.67-xLi3xTiO3. J Electrochem Soc 141:L78CrossRef Kawai H, Kuwano J (1994) Lithium ion conductivity of a-site deficient perovskite solid solution La0.67-xLi3xTiO3. J Electrochem Soc 141:L78CrossRef
27.
go back to reference Itasaka H, Mimura K, Kato K (2018) Extra surfactant-assisted self-assembly of highly ordered monolayers of BaTiO3 Nanocubes at the air–water interface. Nanomaterials 8:739CrossRef Itasaka H, Mimura K, Kato K (2018) Extra surfactant-assisted self-assembly of highly ordered monolayers of BaTiO3 Nanocubes at the air–water interface. Nanomaterials 8:739CrossRef
28.
go back to reference Osada M, Sasaki T (2012) Two-dimensional dielectric nanosheets: novel nanoelectronics from nanocrystal building blocks. Adv Mater 24:210–228CrossRef Osada M, Sasaki T (2012) Two-dimensional dielectric nanosheets: novel nanoelectronics from nanocrystal building blocks. Adv Mater 24:210–228CrossRef
29.
go back to reference Maria J-P, Kang X, Floyd RD, Dickey EC, Guo H, Guo J, Baker A, Funihashi S, Randall CA (2017) Cold sintering: current status and prospects. J Mater Res 32:3205–3218CrossRef Maria J-P, Kang X, Floyd RD, Dickey EC, Guo H, Guo J, Baker A, Funihashi S, Randall CA (2017) Cold sintering: current status and prospects. J Mater Res 32:3205–3218CrossRef
30.
go back to reference Guo J, Zhao X, Beauvoir THD, Seo J-H, Berbano SS, Baker AL, Azina C, Randall CA (2018) Recent progress in applications of the cold sintering process for ceramic–polymer composites. Adv Funct Mater 28:1801724CrossRef Guo J, Zhao X, Beauvoir THD, Seo J-H, Berbano SS, Baker AL, Azina C, Randall CA (2018) Recent progress in applications of the cold sintering process for ceramic–polymer composites. Adv Funct Mater 28:1801724CrossRef
31.
go back to reference Hamao N, Yamaguchi Y, Hamamoto K (2021) Densification of a NASICON-Type LATP electrolyte sheet by a cold-sintering process. Materials 14:4737CrossRef Hamao N, Yamaguchi Y, Hamamoto K (2021) Densification of a NASICON-Type LATP electrolyte sheet by a cold-sintering process. Materials 14:4737CrossRef
32.
go back to reference O. I. V’yunov TO, Plutenko OP, Fedorchuk AG, Belous YeV (2021) Lobko, Synthesis and dielectric properties in the lithium-ion conducting material La0.5Li0.5-xNaxTiO3. J Alloy Compd 889:161556CrossRef O. I. V’yunov TO, Plutenko OP, Fedorchuk AG, Belous YeV (2021) Lobko, Synthesis and dielectric properties in the lithium-ion conducting material La0.5Li0.5-xNaxTiO3. J Alloy Compd 889:161556CrossRef
33.
go back to reference Symington AR, Purton J, Statham J, Molinari M, Saiful Islam M, Parker SC (2020) Quantifying the impact of disorder on Li-ion and Na-ion transport in perovskite titanate solid electrolytes for solid-state batteries. J Mater Chem A 8:19603–19611CrossRef Symington AR, Purton J, Statham J, Molinari M, Saiful Islam M, Parker SC (2020) Quantifying the impact of disorder on Li-ion and Na-ion transport in perovskite titanate solid electrolytes for solid-state batteries. J Mater Chem A 8:19603–19611CrossRef
Metadata
Title
Hydrothermal synthesis of perovskite-type solid electrolyte nanoplate
Authors
Ken-ichi Mimura
Naoki Hamao
Hiroki Itasaka
Zheng Liu
Koichi Hamamoto
Publication date
05-05-2022
Publisher
Springer US
Published in
Journal of Sol-Gel Science and Technology / Issue 3/2022
Print ISSN: 0928-0707
Electronic ISSN: 1573-4846
DOI
https://doi.org/10.1007/s10971-022-05810-3

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