Recent Progress in Interfacial Nanoarchitectonics in Solid-State Batteries

被引:67
作者
Takada, Kazunori [1 ]
Ohta, Narumi [1 ]
Tateyama, Yoshitaka [1 ]
机构
[1] Natl Inst Mat Sci, Tsukuba, Ibaraki, Japan
关键词
Solid-state lithium battery; Interface; Nanoionics; Space-charge layer; Sulfide electrolyte; LITHIUM-ION; CATHODE MATERIALS; TANTALUM OXIDE; CONDUCTIVITY; ELECTROLYTE; DENSIFICATION; PERFORMANCE; CERAMICS; GLASS;
D O I
10.1007/s10904-014-0127-8
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Employing solid electrolytes in lithium-ion batteries is anticipated to be a solution to some issues originated from their organic electrolytes. However, solid-state lithium batteries had not been practicable, because ionic conductivities of lithium-ion conductive solid electrolytes had been very low. Therefore, many studies aiming at the development of solid-state lithium batteries have been focused on enhancement of ionic transport in solids. They have succeeded in enhancing the conductivity to be comparable to or even higher than that of liquids. At this stage, rate-determining step of the battery reactions is sometimes ionic transport at interface rather than bulk in the battery components. Since anomalous ionic conduction at the interface takes place in space-charge layers with ca. 10 nm in thickness, it will be controlled by "nanoarchitectonics". This paper reviews some interfacial nanoarchitectures that control the interfacial ionic conduction to enhance the performance of solid-state lithium batteries.
引用
收藏
页码:205 / 213
页数:9
相关论文
共 50 条
[31]   Synthesis and characterization of LiAl1/4Ni3/4O2 (R(3)over-bar-m) for lithium-ion (shuttlecock) batteries [J].
Ohzuku, T ;
Ueda, A ;
Kouguchi, M .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1995, 142 (12) :4033-4039
[32]   Exfoliated oxide nanosheets: new solution to nanoelectronics [J].
Osada, Minoru ;
Sasaki, Takayoshi .
JOURNAL OF MATERIALS CHEMISTRY, 2009, 19 (17) :2503-2511
[33]   Nanostructured cathode materials: a key for better performance in Li-ion batteries [J].
Pitchai, Ragupathy ;
Thavasi, Velmurugan ;
Mhaisalkar, Subodh G. ;
Ramakrishna, Seeram .
JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (30) :11040-11051
[34]   LITHIUM CHALCOGENIDE CONDUCTIVE GLASSES [J].
PRADEL, A ;
RIBES, M .
MATERIALS CHEMISTRY AND PHYSICS, 1989, 23 (1-2) :121-142
[35]   Evaluation of elastic modulus of Li2S-P2S5 glassy solid electrolyte by ultrasonic sound velocity measurement and compression test [J].
Sakuda, Atsushi ;
Hayashi, Akitoshi ;
Takigawa, Yorinobu ;
Higashi, Kenji ;
Tatsumisago, Masahiro .
JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2013, 121 (1419) :946-949
[36]   Sulfide Solid Electrolyte with Favorable Mechanical Property for All-Solid-State Lithium Battery [J].
Sakuda, Atsushi ;
Hayashi, Akitoshi ;
Tatsumisago, Masahiro .
SCIENTIFIC REPORTS, 2013, 3
[37]   Intefacial Observation between LiCoO2 Electrode and Li2S-P2S5 Solid Electrolytes of All-Solid-State Lithium Secondary Batteries Using Transmission Electron Microscopy [J].
Sakuda, Atsushi ;
Hayashi, Akitoshi ;
Tatsumisago, Masahiro .
CHEMISTRY OF MATERIALS, 2010, 22 (03) :949-956
[38]   A sulphide lithium super ion conductor is superior to liquid ion conductors for use in rechargeable batteries [J].
Seino, Yoshikatsu ;
Ota, Tsuyoshi ;
Takada, Kazunori ;
Hayashi, Akitoshi ;
Tatsumisago, Masahiro .
ENERGY & ENVIRONMENTAL SCIENCE, 2014, 7 (02) :627-631
[39]   Nanostructured electrodes for lithium-ion and lithium-air batteries: the latest developments, challenges, and perspectives [J].
Song, Min-Kyu ;
Park, Soojin ;
Alamgir, Faisal M. ;
Cho, Jaephil ;
Liu, Meilin .
MATERIALS SCIENCE & ENGINEERING R-REPORTS, 2011, 72 (11) :203-252
[40]   Lithium Ion Conductive Glass and its Application to Solid State Batteries [J].
Takada, K. ;
Kondo, S. .
IONICS, 1998, 4 (1-2) :42-47