Electrochemical methods for water purification, ion separations, and energy conversion

MA Alkhadra, X Su, ME Suss, H Tian, EN Guyes… - Chemical …, 2022 - ACS Publications
Agricultural development, extensive industrialization, and rapid growth of the global
population have inadvertently been accompanied by environmental pollution. Water …

Electrified water treatment: fundamentals and roles of electrode materials

K Zuo, S Garcia-Segura, GA Cerrón-Calle… - Nature Reviews …, 2023 - nature.com
Electrified processes are a versatile way of removing a wide range of contaminants from
water, especially those that are difficult to treat using conventional methods. Electrified …

Electrocapacitive deionization: mechanisms, electrodes, and cell designs

K Sun, M Tebyetekerwa, C Wang… - Advanced Functional …, 2023 - Wiley Online Library
Capacitive deionization (CDI) is an emerging water desalination technology for removing
different ionic species from water, which is based on electric charge compensation by these …

MOF-on-MOF nanoarchitectures for selectively functionalized nitrogen-doped carbon-graphitic carbon/carbon nanotubes heterostructure with high capacitive …

Y Zhang, J Wu, S Zhang, N Shang, X Zhao… - Nano Energy, 2022 - Elsevier
Carbon-carbon heterostructures are an emerging material paradigm to promote the
development of capacitive deionization (CDI). The synthesis of this heterostructure with …

Recent Advances in Faradic Electrochemical Deionization: System Architectures versus Electrode Materials

Y Liu, K Wang, X Xu, K Eid, AM Abdullah, L Pan… - ACS …, 2021 - ACS Publications
Capacitive deionization (CDI) is an energy-efficient desalination technique. However, the
maximum desalination capacity of conventional carbon-based CDI systems is approximately …

A reverse‐defect‐engineering strategy toward high edge‐nitrogen‐doped nanotube‐like carbon for high‐capacity and stable sodium ion capture

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 …

Enabling superior sodium capture for efficient water desalination by a tubular polyaniline decorated with Prussian blue nanocrystals

W Shi, X Liu, T Deng, S Huang, M Ding… - Advanced …, 2020 - Wiley Online Library
The application of electrochemical energy storage materials to capacitive deionization (CDI),
a low‐cost and energy‐efficient technology for brackish water desalination, has recently …

Ultra-durable and highly-efficient hybrid capacitive deionization by MXene confined MoS2 heterostructure

Z Chen, X Xu, Y Liu, J Li, K Wang, Z Ding, F Meng, T Lu… - Desalination, 2022 - Elsevier
Capacitive deionization (CDI) is an emerging desalination technology, offering an advisable
route to fetch clean water due to its low energy consumption and environmental friendliness …

Mxene pseudocapacitive electrode material for capacitive deionization

B Zhang, A Boretti, S Castelletto - Chemical Engineering Journal, 2022 - Elsevier
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 …

[HTML][HTML] Porous cryo-dried MXene for efficient capacitive deionization

W Bao, X Tang, X Guo, S Choi, C Wang, Y Gogotsi… - Joule, 2018 - cell.com
Aerogel-like, porous Ti 3 C 2 T x MXene architecture electrode displayed a high
electroadsorption capacity for capacitive deionization of saline water. A vacuum freeze …