Emerging materials and technologies for electrocatalytic seawater splitting

H Jin, J Xu, H Liu, H Shen, H Yu, M Jaroniec… - Science …, 2023 - science.org
The limited availability of freshwater in renewable energy-rich areas has led to the
exploration of seawater electrolysis for green hydrogen production. However, the complex …

Water electrolysis toward elevated temperature: advances, challenges and frontiers

W Zhang, M Liu, X Gu, Y Shi, Z Deng, N Cai - Chemical Reviews, 2023 - ACS Publications
Since severe global warming and related climate issues have been caused by the extensive
utilization of fossil fuels, the vigorous development of renewable resources is needed, and …

Water electrolysers with closed and open electrochemical systems

MF Lagadec, A Grimaud - Nature Materials, 2020 - nature.com
Green hydrogen production using renewables-powered, low-temperature water
electrolysers is crucial for rapidly decarbonizing the industrial sector and with it many …

[HTML][HTML] Influence of bubbles on the energy conversion efficiency of electrochemical reactors

A Angulo, P van der Linde, H Gardeniers, M Modestino… - Joule, 2020 - cell.com
Bubbles are known to influence energy and mass transfer in gas-evolving electrodes.
However, we lack a detailed understanding on the intricate dependencies between bubble …

Interfacial water reorganization as a pH-dependent descriptor of the hydrogen evolution rate on platinum electrodes

I Ledezma-Yanez, WDZ Wallace, P Sebastián-Pascual… - Nature Energy, 2017 - nature.com
Hydrogen evolution on platinum is a key reaction for electrocatalysis and sustainable energy
storage, yet its pH-dependent kinetics are not fully understood. Here we present a detailed …

Bubble engineering on micro-/nanostructured electrodes for water splitting

M Li, P Xie, L Yu, L Luo, X Sun - ACS nano, 2023 - ACS Publications
Bubble behaviors play crucial roles in mass transfer and energy efficiency in gas evolution
reactions. Combining multiscale structures and surface chemical compositions, micro …

Pathways to electrochemical solar-hydrogen technologies

S Ardo, DF Rivas, MA Modestino, VS Greiving… - Energy & …, 2018 - pubs.rsc.org
Solar-powered electrochemical production of hydrogen through water electrolysis is an
active and important research endeavor. However, technologies and roadmaps for …

Microfluidics for electrochemical energy conversion

OA Ibrahim, M Navarro-Segarra, P Sadeghi… - Chemical …, 2022 - ACS Publications
Electrochemical energy conversion is an important supplement for storage and on-demand
use of renewable energy. In this regard, microfluidics offers prospects to raise the efficiency …

Research advances towards large-scale solar hydrogen production from water

G Liu, Y Sheng, JW Ager, M Kraft, R Xu - EnergyChem, 2019 - Elsevier
Solar hydrogen production from water is a sustainable alternative to traditional hydrogen
production route using fossil fuels. However, there is still no existing large-scale solar …

Why do we use the materials and operating conditions we use for heterogeneous (photo) electrochemical water splitting?

A Govind Rajan, JMP Martirez, EA Carter - ACS Catalysis, 2020 - ACS Publications
Water splitting through the use of (photo) electrocatalysts is a carbon-free route to
sustainably produce hydrogen gas for use in various applications, such as ammonia and …