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Revisiting the Role of Discharge Products in Li–CO2 Batteries
Rechargeable lithium‐carbon dioxide (Li–CO2) batteries are promising devices for CO2
recycling and energy storage. However, thermodynamically stable and electrically insulating …
recycling and energy storage. However, thermodynamically stable and electrically insulating …
Reversible discharge products in Li–air batteries
Abstract Lithium–air (Li–air) batteries stand out among the post‐Li‐ion batteries due to their
high energy density, which has rapidly progressed in the past years. Regarding the …
high energy density, which has rapidly progressed in the past years. Regarding the …
Light-Induced Variation of Lithium Coordination Environment in gC3N4 Nanosheet for Highly Efficient Oxygen Reduction Reactions
The structure and electronic state of the active center in a single-atom catalyst undergo
noticeable changes during a dynamic catalytic process. The metal atom active center is not …
noticeable changes during a dynamic catalytic process. The metal atom active center is not …
Controllable interface engineering for the preparation of high rate silicon anode
Silicon (Si) is considered to be the promising candidate anode for the next generation of
high‐energy‐density batteries. However, the poor initial coulombic efficiency (ICE) and rate …
high‐energy‐density batteries. However, the poor initial coulombic efficiency (ICE) and rate …
Li/Ni Intermixing: The Real Origin of Lattice Oxygen Stability in Co‐Free Ni‐Rich Cathode Materials
Y Song, Y Cui, L Geng, B Li, L Ge… - Advanced Energy …, 2024 - Wiley Online Library
Abstract The Co‐free Ni‐rich layered cathode materials with excellent structural stability and
low‐cost in Ni‐rich family are emerging as the promising candidates for the next generation …
low‐cost in Ni‐rich family are emerging as the promising candidates for the next generation …
Unveiling the mysteries of operating voltages of lithium-carbon dioxide batteries
Lithium-carbon dioxide (Li-CO2) batteries are regarded as a promising electrochemical
system owing to their energy storage capability and CO2 utilization. However, the reported …
system owing to their energy storage capability and CO2 utilization. However, the reported …
Kinetically accelerated lithium storage in high‐entropy (LiMgCoNiCuZn) O enabled by oxygen vacancies
High‐entropy oxides (HEOs) are gradually becoming a new focus for lithium‐ion battery
(LIB) anodes due to their vast element space/adjustable electrochemical properties and …
(LIB) anodes due to their vast element space/adjustable electrochemical properties and …
Two Better Than One: Enhanced Photo‐Assisted Li‐O2 Batteries with Bimetallic Fe‐UiO‐66 Metal‐Organic Framework Photocathodes
Y Yang, X Hu, G Wang, J Han, Q Zhang… - Advanced Functional …, 2024 - Wiley Online Library
Li‐O2 batteries, known for their impressive theoretical specific energy, face significant
practical challenges, including slow kinetics, voltage hysteresis, and reduced cycle life. In …
practical challenges, including slow kinetics, voltage hysteresis, and reduced cycle life. In …
Ion-Exchange Effects in One-Dimensional Lepidocrocite TiO2: A Cryogenic Scanning Transmission Electron Microscopy and Density Functional Theory Study
One-dimensional lepidocrocite, 1DL, titania, TiO2, is a recently discovered form of this
ubiquitous oxide that is of interest in a variety of applications ranging from photocatalysis to …
ubiquitous oxide that is of interest in a variety of applications ranging from photocatalysis to …
In situ detecting thermal stability of solid electrolyte interphase (SEI)
J Wu, S Weng, X Zhang, W Sun, W Wu, Q Wang, X Yu… - Small, 2023 - Wiley Online Library
Solid electrolyte interphase (SEI) plays an important role in regulating the interfacial ion
transfer and safety of Lithium‐ion batteries (LIBs). It is unstable and readily decomposed …
transfer and safety of Lithium‐ion batteries (LIBs). It is unstable and readily decomposed …