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An insight into the promotion effect of Na+/vacancy ordering on desalination performance of NaxCoO2

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TLDR
In this article, an asymmetrical FDI device was developed where NaxCoO2 as the Faradic electrode material and AC act as the Cl-storage electrode material for the first time to explore the effect of Na+/vacancy ordering on desalination performance.
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This article is published in Desalination.The article was published on 2020-03-15. It has received 10 citations till now. The article focuses on the topics: Desalination.

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Journal ArticleDOI

Recent Advances in Desalination Battery: An Initial Review

TL;DR: This work comprehensively review the development of the concept and the electrode materials for a desalination battery, summarize the performance of a full desalinated battery, and propose perspectives and guidelines.
Journal ArticleDOI

A Brief Review on High-Performance Capacitive Deionization Enabled by Intercalation Electrodes.

TL;DR: In this article, the recent progress in various sodium ion intercalation materials as highly‐efficient CDI electrodes is summarized and reviewed and an outlook on the future development of ion interCalation electrodes is proposed.
Journal ArticleDOI

Efficient and Durable Sodium, Chloride‐doped Iron Oxide‐Hydroxide Nanohybrid‐Promoted Capacitive Deionization of Saline Water via Synergetic Pseudocapacitive Process

TL;DR: In this paper , an asymmetric CDI cell with Na and Cl dopants (e.g., Na•FeOOH and Cl•FeO•OOOH) was constructed, and the authors reported a superior salt adsorption capacity (SACNaCl) of 35.12 mg g−1 in a 500 mg L−1 NaCl solution, and remarkable cycling stability.
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A novel “butter-sandwich” Ti3C2Tx/PANI/PPY electrode with enhanced adsorption capacity and recyclability toward asymmetric capacitive deionization

TL;DR: In this article, a novel Ti3C2Tx/PANI/PPY electrode is invented with a "butter-sandwich" microstructure, where bread-like Ti3c2Tx slices are intercalated by polypyrrole (PPY) spheres, and then glued by butter-like polyaniline (PANI) for a superhigh structural stability and elevated specific surface area.
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Enhanced Desalination Capacity and Stability of Alkylamine-Modified Na0.71CoO2 for Capacitive Deionization

TL;DR: Simultaneously regulating the physical properties and chemical environment of interlayer is a critical need for enhancing the capacity and stability of layered electrode materials in energy and env... as mentioned in this paper,...
References
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Journal ArticleDOI

Review on the science and technology of water desalination by capacitive deionization

TL;DR: Capacitive deionization (CDI) as mentioned in this paper is a promising technology for energy-efficient water desalination using porous carbon electrodes, which is made of porous carbons optimized for salt storage capacity and ion and electron transport.
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Electrochemical investigation of the P2–NaxCoO2 phase diagram.

TL;DR: Electrochemical processes are confirmed to be an accurate route to precisely investigate in a continuous way such a complex system and provide a new way to synthesize materials with a very narrow existence range.
Journal ArticleDOI

An advanced cathode for Na-ion batteries with high rate and excellent structural stability

TL;DR: Excellent cycling properties and high rate capability can be obtained by limiting the oxygen framework shift during P2-O2 phase transformation, suggesting that this material can be a strong candidate as a sustainable low-cost Na-ion battery cathode.
Journal ArticleDOI

Faradaic reactions in capacitive deionization (CDI) - problems and possibilities: A review.

TL;DR: An overview of the types and mechanisms of Faradaic reactions in CDI systems including anodic oxidation of carbon electrodes, cathodic reduction of oxygen and FarADAic ion storage are presented and their apparent negative and positive effects on water desalination are identified.
Journal ArticleDOI

P2-NaxVO2 system as electrodes for batteries and electron-correlated materials

TL;DR: The detailed phase diagram of the layered P2-Na(x)VO(2) system determined from electrochemical intercalation/deintercalation in sodium batteries and in situ X-ray diffraction experiments shows that four main single-phase domains exist within the 0.5≤x≤0.9 range.
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