Long-life aqueous zinc-iodine flow batteries …
Here, authors develop a tailored ionic-molecular sieve membrane that selectively intercepts hydrated ions, enabling stable high …
Orchestrating ion conduction and interface stability with a ...
Abstract Solid-state zinc‑iodine batteries represent a promising avenue for suppressing iodine dissolution and shuttle effects that plague aqueous batteries. However, …
The Frontiers of Aqueous Zinc–Iodine Batteries: A …
This review provides an in-depth understanding of all theoretical reaction mechanisms to date concerning zinc–iodine batteries. It revisits the inherent issues and …
Advancements and Challenges in Aqueous Zinc-Iodine Batteries ...
Aqueous zinc-iodine batteries (AZIBs) offer intrinsic safety, low cost, and high theoretical capacity, yet their practical performance is hindered by three coupled challenges: …
Long-life aqueous zinc-iodine flow batteries enabled by selectively ...
Herein, we develop a tailored ionic-molecular sieve membrane to regulate the transport behaviors of water/hydrated ion clusters, enabling the electrolyte balance by precise size sieving effects.
Advancements in aqueous zinc–iodine batteries: a …
Aqueous zinc-iodine batteries stand out as highly promising energy storage systems owing to the abundance of resources and non …
Exploring the Performance and Mass-Transfer …
While aqueous batteries are limited by a relatively narrow electrochemical window of less than 1.6 V due to water electrolysis, they …
Perspectives on zinc-based flow batteries
In this perspective, we first review the development of battery components, cell stacks, and demonstration systems for zinc-based flow battery technologies from the …
Long-life aqueous zinc-iodine flow batteries enabled by
Herein, we develop a tailored ionic-molecular sieve membrane to regulate the transport behaviors of water/hydrated ion clusters, enabling the electrolyte balance by precise size sieving effects.
Water-Restrained Hydrogel Electrolytes with Repulsion-Driven …
To address this challenge, we designed a cationic hydrogel named PAPTMA to holistically improve the reversibility of ZIBs.
Long-life aqueous zinc-iodine flow batteries enabled by ...
Here, authors develop a tailored ionic-molecular sieve membrane that selectively intercepts hydrated ions, enabling stable high-capacity long cycling with low projected costs.
Advancements in aqueous zinc–iodine batteries: a review
Aqueous zinc-iodine batteries stand out as highly promising energy storage systems owing to the abundance of resources and non-combustible nature of water coupled …
Exploring the Performance and Mass-Transfer Characteristics of …
While aqueous batteries are limited by a relatively narrow electrochemical window of less than 1.6 V due to water electrolysis, they offer higher ionic conductivity and lower costs [8].
Water-Restrained Hydrogel Electrolytes with Repulsion-Driven …
To address this challenge, we designed a cationic hydrogel named PAPTMA to holistically improve the reversibility of ZIBs.
Crystallizing ion conduction pathways
Solid-state zinc-ion batteries are a promising alternative to lithium-based energy storage devices, offering improved safety, greater material abundance, and enhanced long …
Recent development and prospect of membranes for alkaline zinc …
As a reprehensive zinc-based flow battery, the alkaline zinc-iron flow battery (AZIFB), with a high potential of 1.74 V and low materials cost, was put forward in 1979 [20], …
Chitosan Composite Membrane with Efficient Hydroxide Ion …
Consequently, the Cts‐Cu‐M membrane achieves high hydroxide ion conductivity with an area resistance of 0.17 Ω cm 2 and enables an alkaline zinc‐based flow battery to operate at 320 …
Stable sulfonated poly (oxindole biphenylene) as ion-solvating ...
Another challenge for AZIFBs is the zinc dendrite/accumulation, which is fatal for the cycle life of zinc-based flow batteries [[15], [16], [17]]. Although adding some additives in the …
A review of zinc-based battery from alkaline to acid
Alkaline electrolyte zinc-based battery has higher energy density than the mild electrolyte zinc-based battery, but its cycle performance is far inferior to the mild electrolyte one.
Development and characterization of zinc ion conducting …
Moreover, the aqueous zinc ion batteries are now emerging rapidly because it gives high ionic conductivity but it may have some of disadvantages like formation of dentrites …
Progress and challenges of zinc‑iodine flow batteries: From …
Aiming at the current research status and development of iodine-based batteries, Zhou et al. reviewed the development progress of static aqueous zinc‑iodine batteries and …
Starch-mediated colloidal chemistry for highly reversible zinc-based ...
The development of porous membranes that could work under high power density brings promise but a challenge with polyiodide cross-over for aqueous Zn-I flow batteries. …
A green and cost-effective zinc-biphenol hybrid flow battery with ...
A green and cost-effective zinc-based eutectic electrolyte with high ionic conductivity and excellent dissolution ability for redox-active biphenol derivatives was reported …
A high performance, stable anion exchange membrane for …
The development of AEMs for alkaline-based flow batteries is not facile: One requirement is to improve the ionic conductivity for the battery performance, which prefers …
Biomimetic and biodegradable separator with high modulus and …
The separator plays a crucial role in mitigating dendrites and side reactions in aqueous zinc-ion batteries. Here, authors design an anisotropic separator with high modulus …
Synthesis and characterization of highly durable hydrocarbon-based ...
Low-cost, durable, and high-performance membranes are urgent requirements for zinc bromine redox flow battery (ZBFB) applications. Sulfonated poly (ether ether ketone), …
A high ion-conductive and stable porous membrane for …
Zn-based flow batteries (ZFBs) with low cost and high eficiency have become one of promising energy storage technologies for renewable energy development. However, in …
Long-life aqueous zinc-iodine flow batteries enabled by ...
Here, authors develop a tailored ionic-molecular sieve membrane that selectively intercepts hydrated ions, enabling stable high-capacity long cycling with low projected costs.
Water-Restrained Hydrogel Electrolytes with Repulsion-Driven …
To address this challenge, we designed a cationic hydrogel named PAPTMA to holistically improve the reversibility of ZIBs.
