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Thermal transformation of MIL-53(Fe)/GO into EMI shielding materials

delete2026-07-30
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OA
AI
M
Mohamed E. Elmowafy
R
Ramy Sadek
M
Mahmoud Zorainy
O
Osama Abuzalat
A
Ahmad Baraka
M
Mohamed F. Hagag
H
Hesham Tantawy *
DOI:10.1186/s13065-026-01850-wdelete
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Abstract

Abstract

En 中文
The pyrolysis process parameters were systematically investigated to develop a highly effective EMI shielding composite. By evaluating the key synthesis conditions of pyrolysis temperatures (350 °C, 450 °C, and 550 °C) and durations (0.5 h, 1 h and 2 h), a significant structural transformations and degradation were observed. Optimal conditions were identified at 450℃ for 1 h under an inert argon atmosphere. Under these conditions, enhanced graphitization occurred via the in-situ reduction of GO, alongside the partial degradation of MIL-53(Fe) structure into γ-Fe2O3, yielding a ternary composite structure. This optimized composite achieved a total shielding effectiveness (SET) of 43 dB, with absorption shielding efficiency (SEA) of 40 dB and minimal wave reflection (SER) of 2.9 dB. The synergistic properties of this ternary composite make it a promising candidate for a wide range of EMI shielding applications. Its combined dielectric and magnetic characteristics offer a lightweight, efficient, and robust material for effective electromagnetic wave attenuation.
Keywords:
Graphene
Metal–organic framework
Thermal treatment
Electromagnetic wave
Pyrolysis
Shielding
Synergism

Journal

BMC Chemistry cover
BMC Chemistry
IF:
4.6
Papers:
1.3K
Citations:
3.1K

Organization

C
chemical engineering department
Scholars:
292
Papers: 128
Citations: 0
T
technical research center
Scholars:
13
Papers: 6
Citations: 0
D
department of electronic engineering
Scholars:
248
Papers: 126
Citations: 0
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