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One-Dimensional High-Entropy Compounds

delete2024-03-14
delete12
PRE
AI
J
Junyi Du
S
Shuai Liu
刘晔 cover
刘晔 (Ye Liu)
G
Geng Wu
X
Xiaocheng Liu
W
Wujun Zhang
Y
Yong Zhang
洪勋 (Xun Hong) *
Q
Qingwen Li
L
Lixing Kang *
DOI:10.1021/jacs.3c14510delete
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Abstract

Abstract

En 中文
One-dimensional (1D) high-entropy compounds (HECs) with subnano diameters are highly attractive because long-range electron delocalization may occur along the high-entropy atomic chain, which results in extraordinary properties. Nevertheless, synthesizing such 1D HECs presents a substantial challenge, and the physicochemical attributes of these novel structures remain ambiguous. Herein, we developed a comelting-filling-freezing-modification (co-MFFM) method for synthesizing 1D high-entropy metal phosphide (HEP) by simultaneously encapsulating various metal cations within single-walled carbon nanotubes (SWCNTs) followed with a phosphorization process. The resulting 1D HEP nanowires confined within SWCNTs exhibit crucial features, including an ultrafine, high-entropy, and amorphous structure, along with a core-shell arrangement. The SWCNT as a shell could donate pi electrons to 1D HEP for enhanced electron delocalization and protect 1D HEP as an atomically single-layered protective covering, thus boosting high electrocatalytic activity and stability. Moreover, the co-MFFM method demonstrates scalability for mass production and displays universal applicability to the synthesis of various 1D HECs.
Keywords:
CARBON NANOTUBES
SURFACE-TENSION
ALLOY

Journal

Journal of the American Chemical Society cover
Journal of the American Chemical Society
IF:
15.6
Papers:
20.0W
Citations:
60.2W

Organization

S
suzhou institute of nano-tech & nano-bionics, cas
Scholars:
1.5K
Papers: 1.1K
Citations: 2
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704