Skip navigation
Statistics
Help
About OPUS
How to Deposit
Managing Copyright
Browse
UTS Organisational Groups
Browse Items by:
Issue Date
Author
Title
Type
ARC/NHRMC Funded
Search OPUS
OPUS at UTS
Browsing byAuthorArmand, M
Jump to:
0-9
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
Q
R
S
T
U
V
W
X
Y
Z
or enter first few letters:
Sort by:
title
issue date
submit date
ARC/NHRMC funded
In order:
Ascending
Descending
Results/Page
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Authors/Record:
All
1
5
10
15
20
25
30
35
40
45
50
Showing results 1 to 20 of 24
next >
Issue Date
Title
Author(s)
2022-10-07
A green and sustainable strategy toward lithium resources recycling from spent batteries.
Xu, J
;
Jin, Y
;
Liu, K
;
Lyu, N
;
Zhang, Z
;
Sun, B
;
Jin, Q
;
Lu, H
;
Tian, H
;
Guo, X
;
Shanmukaraj, D
;
Wu, H
;
Li, M
;
Armand, M
;
Wang, G
2023-07-24
A Hierarchical Hybrid MXenes Interlayer with Triple Function for Room-Temperature Sodium-Sulfur Batteries
Huang, Z
;
Wang, S
;
Guo, X
;
Safaei, J
;
Lei, Y
;
Lai, WH
;
Zhang, X
;
Sun, B
;
Shanmukaraj, D
;
Armand, M
;
Rojo, T
;
Wang, G
2024-02
A Lithium Intrusion-Blocking Interfacial Shield for Wide-Pressure-Range Solid-State Lithium Metal Batteries.
Hu, X
;
Yu, J
;
Wang, Y
;
Guo, W
;
Zhang, X
;
Armand, M
;
Kang, F
;
Wang, G
;
Zhou, D
;
Li, B
2021-09-30
A synergistic exploitation to produce high-voltage quasi-solid-state lithium metal batteries.
Wu, J
;
Wang, X
;
Liu, Q
;
Wang, S
;
Zhou, D
;
Kang, F
;
Shanmukaraj, D
;
Armand, M
;
Rojo, T
;
Li, B
;
Wang, G
2023-09
Designing phosphazene-derivative electrolyte matrices to enable high-voltage lithium metal batteries for extreme working conditions
Meng, Y
;
Zhou, D
;
Liu, R
;
Tian, Y
;
Gao, Y
;
Wang, Y
;
Sun, B
;
Kang, F
;
Armand, M
;
Li, B
;
Wang, G
;
Aurbach, D
2023-09-01
Designing phosphazene-derivative electrolyte matrices to enable high-voltage lithium metal batteries for extreme working conditions
Meng, Y
;
Zhou, D
;
Liu, R
;
Tian, Y
;
Gao, Y
;
Wang, Y
;
Sun, B
;
Kang, F
;
Armand, M
;
Li, B
;
Wang, G
;
Aurbach, D
2018-06-01
Electrode Materials for Sodium-Ion Batteries: Considerations on Crystal Structures and Sodium Storage Mechanisms
Wang, T
;
Su, D
;
Shanmukaraj, D
;
Rojo, T
;
Armand, M
;
Wang, G
2023-12-01
High-Energy Room-Temperature Sodium–Sulfur and Sodium–Selenium Batteries for Sustainable Energy Storage
Huang, Z
;
Jaumaux, P
;
Sun, B
;
Guo, X
;
Zhou, D
;
Shanmukaraj, D
;
Armand, M
;
Rojo, T
;
Wang, G
2018-09-21
Highly Efficient, Cost Effective, and Safe Sodiation Agent for High-Performance Sodium-Ion Batteries
Shanmukaraj, D
;
Kretschmer, K
;
Sahu, T
;
Bao, W
;
Rojo, T
;
Wang, G
;
Armand, M
2020-10-27
Immunizing lithium metal anodes against dendrite growth using protein molecules to achieve high energy batteries.
Wang, T
;
Li, Y
;
Zhang, J
;
Yan, K
;
Jaumaux, P
;
Yang, J
;
Wang, C
;
Shanmukaraj, D
;
Sun, B
;
Armand, M
;
Cui, Y
;
Wang, G
2020-01-01
Non-Flammable Liquid and Quasi-Solid Electrolytes toward Highly-Safe Alkali Metal-Based Batteries
Jaumaux, P
;
Wu, J
;
Shanmukaraj, D
;
Wang, Y
;
Zhou, D
;
Sun, B
;
Kang, F
;
Li, B
;
Armand, M
;
Wang, G
2019-09-12
Polymer Electrolytes for Lithium-Based Batteries: Advances and Prospects
Zhou, D
;
Shanmukaraj, D
;
Tkacheva, A
;
Armand, M
;
Wang, G
2020-09-14
Polyolefin-Based Janus Separator for Rechargeable Sodium Batteries
Zhou, D
;
Tang, X
;
Guo, X
;
Li, P
;
Shanmukaraj, D
;
Liu, H
;
Gao, X
;
Wang, Y
;
Rojo, T
;
Armand, M
;
Wang, G
2020-09
Polyolefin-Based Janus Separator for Rechargeable Sodium Batteries.
Zhou, D
;
Tang, X
;
Guo, X
;
Li, P
;
Shanmukaraj, D
;
Liu, H
;
Gao, X
;
Wang, Y
;
Rojo, T
;
Armand, M
;
Wang, G
2020-11-01
Revitalising sodium-sulfur batteries for non-high-temperature operation: A crucial review
Wang, Y
;
Zhou, D
;
Palomares, V
;
Shanmukaraj, D
;
Sun, B
;
Tang, X
;
Wang, C
;
Armand, M
;
Rojo, T
;
Wang, G
2018-12-01
A room-temperature sodium–sulfur battery with high capacity and stable cycling performance
Xu, X
;
Zhou, D
;
Qin, X
;
Lin, K
;
Kang, F
;
Li, B
;
Shanmukaraj, D
;
Rojo, T
;
Armand, M
;
Wang, G
2020-05-08
Self-Healing Janus Interfaces for High-Performance LAGP-Based Lithium Metal Batteries
Liu, Q
;
Zhou, D
;
Shanmukaraj, D
;
Li, P
;
Kang, F
;
Li, B
;
Armand, M
;
Wang, G
2019-04-23
Stable Conversion Chemistry-Based Lithium Metal Batteries Enabled by Hierarchical Multifunctional Polymer Electrolytes with Near-Single Ion Conduction
Zhou, D
;
Tkacheva, A
;
Tang, X
;
Sun, B
;
Shanmukaraj, D
;
Li, P
;
Zhang, F
;
Armand, M
;
Wang, G
2019-04-23
Stable Conversion Chemistry‐Based Lithium Metal Batteries Enabled by Hierarchical Multifunctional Polymer Electrolytes with Near‐Single Ion Conduction
Zhou, D
;
Tkacheva, A
;
Tang, X
;
Sun, B
;
Shanmukaraj, D
;
Li, P
;
Zhang, F
;
Armand, M
;
Wang, G
2018-08-06
A Stable Quasi-Solid-State Sodium–Sulfur Battery
Zhou, D
;
Chen, Y
;
Li, B
;
Fan, H
;
Cheng, F
;
Shanmukaraj, D
;
Rojo, T
;
Armand, M
;
Wang, G