Functionalized separator strategies toward advanced aqueous zinc‐ion batteries
Y Zong, H He, Y Wang, M Wu, X Ren… - Advanced Energy …, 2023 - Wiley Online Library
Aqueous zinc‐ion batteries (ZIBs) enjoy a good reputation for being safe, affordable to
produce, and ecologically friendly due to the use of water‐based electrolytes. The main …
produce, and ecologically friendly due to the use of water‐based electrolytes. The main …
Electrolyte additive engineering for aqueous Zn ion batteries
Abstract Aqueous Zn ion batteries (AZIBs) are one of the most promising new-generation
electrochemical energy storage devices with high specific capacity, good security, and …
electrochemical energy storage devices with high specific capacity, good security, and …
Highly reversible zinc metal anode in a dilute aqueous electrolyte enabled by a pH buffer additive
Aqueous zinc‐ion batteries have drawn increasing attention due to the intrinsic safety, cost‐
effectiveness and high energy density. However, parasitic reactions and non‐uniform …
effectiveness and high energy density. However, parasitic reactions and non‐uniform …
[PDF][PDF] A polypyrrole-coated MnO2/carbon nanotube film cathode for rechargeable aqueous Zn-ion batteries
Rechargeable aqueous Zinc-ion batteries (ZIBs) have emerged as potential energy storage
devices due to their high energy density, low cost, and safety. To date, numerous cathodes …
devices due to their high energy density, low cost, and safety. To date, numerous cathodes …
Toward practical aqueous zinc-ion batteries for electrochemical energy storage
Chang Li is a PhD candidate in the Department of Chemistry at University of Waterloo, under
the supervision of Professor Linda F. Nazar. He received his bachelor's degree from the …
the supervision of Professor Linda F. Nazar. He received his bachelor's degree from the …
Boosting the kinetics and stability of Zn anodes in aqueous electrolytes with supramolecular cyclodextrin additives
K Zhao, G Fan, J Liu, F Liu, J Li, X Zhou… - Journal of the …, 2022 - ACS Publications
The hydrophobic internal cavity and hydrophilic external surface of cyclodextrins (CDs)
render promising electrochemical applications. Here, we report a comparative and …
render promising electrochemical applications. Here, we report a comparative and …
Inducing the preferential growth of Zn (002) plane for long cycle aqueous Zn‐Ion batteries
H Zhang, Y Zhong, J Li, Y Liao, J Zeng… - Advanced Energy …, 2023 - Wiley Online Library
Uncontrolled growth of Zn dendrites is the main reason for the short‐circuit failure of
aqueous Zn‐ion batteries. Using electrolyte additives to manipulate the crystal growth is one …
aqueous Zn‐ion batteries. Using electrolyte additives to manipulate the crystal growth is one …
A eutectic electrolyte for an ultralong-lived Zn//V 2 O 5 cell: an in situ generated gradient solid-electrolyte interphase
C Meng, WD He, H Tan, XL Wu, H Liu… - Energy & Environmental …, 2023 - pubs.rsc.org
Turbulent interfacial evolution at the Zn anode/electrolyte, leading to rampant dendrites and
parasitic reactions, is responsible for low Coulombic efficiency (CE) and premature failure in …
parasitic reactions, is responsible for low Coulombic efficiency (CE) and premature failure in …
Reversible Zn metal anodes enabled by trace amounts of underpotential deposition initiators
Routine electrolyte additives are not effective enough for uniform zinc (Zn) deposition,
because they are hard to proactively guide atomic‐level Zn deposition. Here, based on …
because they are hard to proactively guide atomic‐level Zn deposition. Here, based on …
Realizing textured zinc metal anodes through regulating electrodeposition current for aqueous zinc batteries
W Yuan, X Nie, G Ma, M Liu, Y Wang… - Angewandte Chemie …, 2023 - Wiley Online Library
Crystallography modulation of zinc (Zn) metal anode is promising to promote Zn reversibility
in aqueous electrolytes, but efficiently constructing Zn with specific crystallographic texture …
in aqueous electrolytes, but efficiently constructing Zn with specific crystallographic texture …