Integrating Multi‐Heterointerfaces in a 1D@2D@1D Hierarchical Structure via Autocatalytic Pyrolysis for Ultra‐Efficient Microwave Absorption Performance (Small 13/2022)

Microwave Absorption In article number 2105411, Xiaolong Jia and co‐workers construct a 1D@2D@1D hierarchical structure integrated with multi‐heterointerfaces to boost the microwave absorption efficiency of materials. This design has greatly reduced the threat of electromagnetic pollution caused by...

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Veröffentlicht in:Small (Weinheim an der Bergstrasse, Germany) Germany), 2022-04, Vol.18 (13), p.n/a
Hauptverfasser: Huan, Xianhua, Wang, Hongtao, Deng, Wenchao, Yan, Jiqiang, Xu, Ke, Geng, Hongbo, Guo, Xiaodong, Jia, Xiaolong, Zhou, Jisheng, Yang, Xiaoping
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container_issue 13
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container_title Small (Weinheim an der Bergstrasse, Germany)
container_volume 18
creator Huan, Xianhua
Wang, Hongtao
Deng, Wenchao
Yan, Jiqiang
Xu, Ke
Geng, Hongbo
Guo, Xiaodong
Jia, Xiaolong
Zhou, Jisheng
Yang, Xiaoping
description Microwave Absorption In article number 2105411, Xiaolong Jia and co‐workers construct a 1D@2D@1D hierarchical structure integrated with multi‐heterointerfaces to boost the microwave absorption efficiency of materials. This design has greatly reduced the threat of electromagnetic pollution caused by the explosive development of communication technology.
doi_str_mv 10.1002/smll.202270065
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subjects autocatalytic pyrolysis
hierarchical structures
metal organic frameworks
multiple heterointerfaces
ultra‐efficient microwave absorption performance
title Integrating Multi‐Heterointerfaces in a 1D@2D@1D Hierarchical Structure via Autocatalytic Pyrolysis for Ultra‐Efficient Microwave Absorption Performance (Small 13/2022)
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