arrow
Return

Ionic Rectification across Ionic and Mixed Conductor Interfaces

delete2021-11-22
delete1
PRE
AI
K
Kazunori Nishio *
S
Satoru Ichinokura
A
Akitaka Nakanishi
K
Kōji Shimizu
Y
Yasutaka Kobayashi
N
Naoto Nakamura
D
Daisuke Imazeki
R
Ryota Shimizu
T
Toru Hirahara
S
Satoshi Watanabe
T
Taro Hitosugi
DOI:10.1021/acs.nanolett.1c03872delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
In electrochemical devices, it is important to control the ionic transport between the electrodes and solid electrolytes. However, it is difficult to tune the transport without applying an electric field. This paper presents a method to modulate the transport via tuning of the electrochemical potential difference by controlling the electronic states at the interfaces. We fabricated thin-film solid-state Li batteries using LiTi2O4 thin films as positive electrodes. The spontaneous Li-ion transport between the solid electrolyte and LiTi2O4 is controlled by tuning the electrochemical potential difference via use of an electrically conducting Nb-doped SrTiO3 substrate. This study establishes the foundation for rectifying the ionic transport via electronic energy band alignment.
Keywords:
thin-film lithium battery
LiTi2O4 epitaxial thin film
ionic rectification
lithium chemical potential tuning
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Nano Letters cover
Nano Letters
IF:
9.1
Papers:
2.7W
Citations:
16.5W

Organization

U
University of Tokyo
Scholars:
7.1W
Papers: 6.5W
Citations: 2.2K
I
Institute of Science Tokyo
Scholars:
3.2W
Papers: 2.7W
Citations: 117
T
Tokyo Institute of Technology
Scholars:
1.1W
Papers: 9.0K
Citations: 1.9W
researcher View more organizations
Cited Papers

Cited Papers

Scanning tunnelling spectroscopy of superconductivity on surfaces of LiTi2O4(111) thin films
err2017-07-03
err24
errOAAI
errOkada, Yoshinori; Ando, Yasunobu; Shimizu, Ryota; Minamitani, Emi; Shiraki, Susumu; Watanabe, Satoshi; Hitosugi, Taro
errShare
errSave
Effects of Anisotropy in Rutile TiO2 on the Performance of Solid-State Lithium Batteries
err2020-09-11
err22
PREAI
errImazeki, Daisuke; van Gils, Christopher Cornelis; Nishio, Kazunori; Shimizu, Ryota; Hitosugi, Taro
errShare
errSave
Advanced Geometries of PEDOT Formed in Titania Nanotubes
err2012-10-02
err0
PREAI
errDamian Kowalski; Patrik Schmuki
errShare
errSave
Low-Energy-Consumption Three-Valued Memory Device Inspired by Solid-State Batteries
err2019-10-25
err6
errOAAI
errWatanabe, Yuki; Kobayashi, Shigeru; Sugiyama, Issei; Nishio, Kazunori; Liu, Wei; Watnabe, Satoshi; Shimizu, Ryota; Hitosugi, Taro
errShare
errSave
Preparation and in-situ characterization of well-defined solid electrolyte/electrode interfaces in thin-film lithium batteries
err2016-02-01
err42
PREAI
errHaruta, Masakazu; Shiraki, Susumu; Ohsawa, Takeo; Suzuki, Tohru; Kumatani, Akichika; Takagi, Yoshitaka; Shimizu, Ryota; Hitosugi, Taro
errShare
errSave
errShare
errSave
Pulsed laser deposition of oxide thin films
err2006-01-01
err60
PREAI
errOhnishi, T; Koinuma, H; Lippmaa, M
errShare
errSave
Mesoscopic fast ion conduction in nanometre-scale planar heterostructures
errNATURE
IF48.5
err2000-12-01
err774
PREAI
errSata, N; Eberman, K; Eberl, K; Maier, J
errShare
errSave
researcher View more