Self-charging aqueous hydrogen gas batteries

Z Zhu, Z Xie, W Wang, Z Liu, M Wang… - Energy & …, 2024 - pubs.rsc.org
Self-charging aqueous metal-based batteries are attracting extensive attention for use in
energy conversion and storage technologies. However, they are constrained to the …

An ultrastable aqueous iodine‐hydrogen gas battery

Z Zhu, Y Meng, Y Cui, W Chen - Advanced Functional Materials, 2021 - Wiley Online Library
Rechargeable hydrogen gas batteries are highly desirable for large‐scale energy storage
because of their long life cycle, high round trip efficiency, fast reaction kinetics, and …

Self-Powered and Highly Efficient Production of H2O2 through a Zn–Air Battery with Oxygenated Carbon Electrocatalyst

W Wang, Y Hu, Y Liu, Z Zheng… - ACS applied materials & …, 2018 - ACS Publications
Industrially producing H2O2 consumes lots of energy and generates byproducts. For the first
time, we demonstrate the non-energy-consuming, self-powered production of H2O2 based …

Rechargeable Zinc-Water Battery for Sustainable Hydrogen Generation

D Li, Y Yu, W Zhao, F Wang, Y Su, L Cao - Nano Energy, 2024 - Elsevier
Metal-water primary batteries hold promise for distributed hydrogen production but suffer
from limited renewability of metal electrodes in aqueous electrolytes. Here, we introduce a …

A hydrogen‐evolving hybrid‐electrolyte battery with electrochemical/photoelectrochemical charging from water oxidation

Z Jin, P Li, D Xiao - ChemSusChem, 2017 - Wiley Online Library
Decoupled hydrogen and oxygen production were successfully embedded into an aqueous
dual‐electrolyte (acid–base) battery for simultaneous energy storage and conversion. A …

Self-powered H2 generation implemented by hydrazine oxidation assisting hybrid electrochemical cell

X Liu, W Sun, X Hu, J Chen, Z Wen - Chemical Engineering Journal, 2023 - Elsevier
Abstract Liquid-phase hydrogen (H 2) carriers have received widespread attention owing to
their convenient and safe storage and transportation of H 2. Among the various liquid-phase …

A high-rate lithium manganese oxide-hydrogen battery

Z Zhu, M Wang, Y Meng, Z Lin, Y Cui, W Chen - Nano Letters, 2020 - ACS Publications
Rechargeable hydrogen gas batteries show promises for the integration of renewable yet
intermittent solar and wind electricity into the grid energy storage. Here, we describe a …

An All-Climate Nonaqueous Hydrogen Gas–Proton Battery

K Zhang, Z Liu, NA Khan, Y Ma, Z Xie, J Xu, T Jiang… - Nano Letters, 2024 - ACS Publications
Rechargeable hydrogen gas batteries, driven by hydrogen evolution and oxidation reactions
(HER/HOR), are emerging grid-scale energy storage technologies owing to their low cost …

A high-performance aqueous iron–hydrogen gas battery

Z Zhu, Y Meng, M Wang, Y Yin, W Chen - Materials Today Energy, 2021 - Elsevier
Rechargeable hydrogen gas batteries are attracting great interest for emerging large-scale
energy storage owing to their fast charge/discharge rates and excellent stability. Despite …

Photo-assisted seawater-electrolyte Mg/H2O batteries for simultaneous generation of electricity and hydrogen

G Liu, H Lu, Y Xu, Q Quan, H Lv, X Cui, J Chen… - Chemical Engineering …, 2023 - Elsevier
A seawater-electrolyte Mg/H 2 O battery, converting chemical energy of Mg into electricity
and hydrogen via anodic/chemical oxidation of Mg and cathodic reduction of water …