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Evolution of CuCoFe Prussian blue analogues with open nanoframe architectures for enhanced capacitive deionization

delete2024-09-01
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PRE
AI
Y
Yanna Guo
Z
Zeqiu Chen
D
Dong Jiang
李昱琳 (Yulin Li)
W
Wenyang Zhang
K
Kazuya Kozumi
Y
Yunqing Kang
Y
YamauchiYusuke (Yusuke Yamauchi)
Y
Yoshiyuki Sugahara *
DOI:10.1016/j.cej.2024.153714delete
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Abstract

Abstract

En 中文
Despite remarkable progresses have been made on forming a wide variety of Prussian blue analogues (PBAs), one-pot synthesis of PBAs with extraordinarily complex compositions and structures is still challenging. Herein, preparation of trimetallic PBA containing copper, cobalt, and iron with a nanoframe superstructure (CuCoFePBA NFs) via a multi-step in-situ structural conversion is reported. Comparable experiments indicate that successful conversion via this route is attributable to a selftemplated epitaxial growth triggered by the additional introduction of Cu ions into the reaction system. The optimal composition and three-dimensional (3D) opened nanoframe structure of CuCoFe-PBA NFs offer the electrode with rich redox active species, abundant accessible adsorption sites, and fast ion transport that enhance its capacitive deionization (CDI) performance. As a result, the CuCoFe-PBA NFs demonstrate an exceptional CDI performance with a desalination capacity of 46.8 mg g- 1 at an applied potential of 1.4 V and superior cyclability with negligible decay on the desalination capacity even after 100 cycle test.
Keywords:
CARBON

Journal

Chemical Engineering Journal cover
Chemical Engineering Journal
IF:
13.2
Papers:
7.4W
Citations:
48.5W

Organization

N
national institute for materials science
Scholars:
9.5K
Papers: 1.3W
Citations: 28
W
Waseda University
Scholars:
9.9K
Papers: 8.6K
Citations: 8.3K
N
Nagoya University
Scholars:
3.3W
Papers: 2.5W
Citations: 2.6W
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