Applications of 2D MXenes in energy conversion and storage systems

J Pang, RG Mendes, A Bachmatiuk, L Zhao… - Chemical Society …, 2019 - pubs.rsc.org
Transition metal carbides and nitrides (MXenes), a family of two-dimensional (2D) inorganic
compounds, are materials composed of a few atomic layers of transition metal carbides …

Developing high‐performance lithium metal anode in liquid electrolytes: challenges and progress

S Li, M Jiang, Y Xie, H Xu, J Jia, J Li - Advanced materials, 2018 - Wiley Online Library
Lithium metal anodes are potentially key for next‐generation energy‐dense batteries
because of the extremely high capacity and the ultralow redox potential. However, notorious …

The quest for the holy grail of solid-state lithium batteries

P Bonnick, J Muldoon - Energy & Environmental Science, 2022 - pubs.rsc.org
Tremendous improvements in the Li+ conductivity of inorganic solid electrolytes over the
past 15 years have renewed interest in developing solid state batteries, with a particular …

Recent advancements in polymer-based composite electrolytes for rechargeable lithium batteries

SJ Tan, XX Zeng, Q Ma, XW Wu, YG Guo - Electrochemical Energy …, 2018 - Springer
In recent years, lithium batteries using conventional organic liquid electrolytes have been
found to possess a series of safety concerns. Because of this, solid polymer electrolytes …

The Dr Jekyll and Mr Hyde of lithium sulfur batteries

P Bonnick, J Muldoon - Energy & Environmental Science, 2020 - pubs.rsc.org
Although the concept of a lithium–sulfur (Li–S) battery promises an energy density
surpassing that of conventional Li-ion cells, prototype cells have lagged far behind. As …

Ultralight Layer‐by‐Layer Self‐Assembled MoS2‐Polymer Modified Separator for Simultaneously Trapping Polysulfides and Suppressing Lithium Dendrites

J Wu, H Zeng, X Li, X Xiang, Y Liao… - Advanced Energy …, 2018 - Wiley Online Library
Polysulfide shuttling and uncontrollable lithium dendrite growth have hampered the
application of lithium–sulfur (Li–S) batteries. Although various materials have been utilized …

Electrode–electrolyte interfaces in lithium–sulfur batteries with liquid or inorganic solid electrolytes

X Yu, A Manthiram - Accounts of chemical research, 2017 - ACS Publications
Conspectus Electrode–electrolyte interfacial properties play a vital role in the cycling
performance of lithium–sulfur (Li–S) batteries. The issues at an electrode–electrolyte …

A rational reconfiguration of electrolyte for high‐energy and long‐life lithium–chalcogen batteries

WP Wang, J Zhang, YX Yin, H Duan, J Chou… - Advanced …, 2020 - Wiley Online Library
Lithium–chalcogen batteries are an appealing choice for high‐energy‐storage technology.
However, the traditional battery that employs liquid electrolytes suffers irreversible loss and …

A trip to oz and a peak behind the curtain of magnesium batteries

P Bonnick, J Muldoon - Advanced Functional Materials, 2020 - Wiley Online Library
The introduction of the Li‐ion battery has revolutionized the electronics industry due to its
high energy density. Magnesium batteries may have the potential to exceed the energy …

A high performance all solid state lithium sulfur battery with lithium thiophosphate solid electrolyte

P Bonnick, K Niitani, M Nose, K Suto… - Journal of Materials …, 2019 - pubs.rsc.org
Li–S batteries have attracted significant research efforts due to its high energy-density;
however, the lithium–sulfur battery is plagued with many challenges, most notably the …