Review of recent development of in situ/operando characterization techniques for lithium battery research

D Liu, Z Shadike, R Lin, K Qian, H Li, K Li… - Advanced …, 2019 - Wiley Online Library
The increasing demands of energy storage require the significant improvement of current Li‐
ion battery electrode materials and the development of advanced electrode materials. Thus …

In situ analytical techniques for battery interface analysis

AM Tripathi, WN Su, BJ Hwang - Chemical Society Reviews, 2018 - pubs.rsc.org
Lithium-ion batteries, simply known as lithium batteries, are distinct among high energy
density charge-storage devices. The power delivery of batteries depends upon the …

A niobium oxide with a shear structure and planar defects for high-power lithium ion batteries

T Li, G Nam, K Liu, JH Wang, B Zhao, Y Ding… - Energy & …, 2022 - pubs.rsc.org
The development of anode materials with high-rate capability is critical to high-power lithium
batteries. T-Nb2O5 has been widely reported to exhibit pseudocapacitive behavior and fast …

Metal oxides and oxysalts as anode materials for Li ion batteries

MV Reddy, GV Subba Rao, BVR Chowdari - Chemical reviews, 2013 - ACS Publications
Metal Oxides and Oxysalts as Anode Materials for Li Ion Batteries | Chemical Reviews ACS
ACS Publications C&EN CAS Find my institution Log In Chemical Reviews ACS Publications …

[HTML][HTML] Reversible Zn2+ Insertion in Tungsten Ion-Activated Titanium Dioxide Nanocrystals for Electrochromic Windows

Y Liang, S Cao, Q Wei, R Zeng, J Zhao, H Li, WW Yu… - Nano-micro letters, 2021 - Springer
Zinc-anode-based electrochromic devices (ZECDs) are emerging as the next-generation
energy-efficient transparent electronics. We report anatase W-doped TiO 2 nanocrystals …

[HTML][HTML] Plasma-induced defective TiO2-x with oxygen vacancies: a high-active and robust bifunctional catalyst toward H2O2 electrosynthesis

K Dong, J Liang, Y Wang, Y Ren, Z Xu, H Zhou, L Li… - Chem Catalysis, 2021 - cell.com
Achieving high selectivity and production efficiency simultaneously in electrocatalytic H 2 O
2 production to replace the anthraquinone process via two-electron (2e−) oxygen reduction …

Raman microspectrometry applied to the study of electrode materials for lithium batteries

R Baddour-Hadjean, JP Pereira-Ramos - Chemical reviews, 2010 - ACS Publications
Raman spectroscopy is a vibrational technique that provides unique structural information at
the atomic scale1, 2 on inorganic and organic compounds. By coupling an optical …

Nanoparticulate TiO2(B): An Anode for Lithium‐Ion Batteries

Y Ren, Z Liu, F Pourpoint, AR Armstrong… - Angewandte Chemie …, 2012 - infona.pl
Small but powerful: TiO 2 (B) with the smallest particle size yet reported (2.5× 4.3 nm) has
been synthesized (see TEM image). Its volumetric capacity to store lithium, and hence …

Achieving Ultrahigh‐Rate and High‐Safety Li+ Storage Based on Interconnected Tunnel Structure in Micro‐Size Niobium Tungsten Oxides

Y Yang, H Zhu, J Xiao, H Geng, Y Zhang… - Advanced …, 2020 - Wiley Online Library
Developing advanced high‐rate electrode materials has been a crucial aspect for next‐
generation lithium ion batteries (LIBs). A conventional nanoarchitecturing strategy is …

Effects of Inhomogeneities Nanoscale to Mesoscale on the Durability of Li-Ion Batteries

SJ Harris, P Lu - The Journal of Physical Chemistry C, 2013 - ACS Publications
We review work from our laboratory that suggests to us that most Li-ion battery failure can be
ascribed to the presence of nano-and microscale inhomogeneities that interact at the …