Reversible electrochemical processes are a promising technology for energy-efficient water treatment. Electrochemical desalination is based on the compensation of electric charge by …
The low salt adsorption capacities (SACs) of benchmark carbon materials (usually below 20 mg g–1) are one of the most challenging issues limiting further commercial development of …
N Liu, L Yu, B Liu, F Yu, L Li, Y Xiao, J Yang… - Advanced …, 2023 - Wiley Online Library
Constructing faradaic electrode with superior desalination performance is important for expanding the applications of capacitive deionization (CDI). Herein, a simple one‐step …
S Wang, Z Li, G Wang, Y Wang, Z Ling, C Li - ACS nano, 2021 - ACS Publications
Exploring and designing high-performance Faradaic electrode materials is of great significance to enhance the desalination performance of hybrid capacitive deionization …
M Liang, N Liu, X Zhang, Y Xiao… - Advanced Functional …, 2022 - Wiley Online Library
Developing high‐performance defect‐rich carbon materials with abundant accessible active sites is exceedingly vital for electrochemical water desalination, but this still remains a …
With the increasing severity of global water scarcity, a myriad of scientific activities is directed toward advancing brackish water desalination and wastewater remediation …
W Tang, J Liang, D He, J Gong, L Tang, Z Liu, D Wang… - Water research, 2019 - Elsevier
Substantial consumption and widespread contamination of the available freshwater resources necessitate a continuing search for sustainable, cost-effective and energy-efficient …
Due to the continually growing world population, water desalination has played a vital role for many countries with a shortage of clean water services. A relevant process for brackish …
Capacitive deionization (CDI), which is based on the electrosorption of ions by porous electrodes, is an emerging technology for brackish water desalination. Understanding the …