Interlayer Electrostatic Interaction Boosts Microwave Attenuation in Bi2O2Se Nanosheets

Abstract Layered nanosheets play a role in promoting electromagnetic attenuation in the field of microwave absorption (MA). Compared to interlayer van der Waals force, nanosheets with intrinsic electrostatic interaction are promising to optimize the microwave dissipation between layers. Bi2O2Se consists of alternating [Bi2O2]2+ and [Se]2– layers coupled through intrinsic electrostatic interactions, which may provide additional polarization sites and interlayer charge-transfer pathways. However, the MA performance of these materials has not been reported yet, since their exfoliation behavior and intrinsic polarization mechanisms remain to be explored. Here, Bi2O2Se nanosheets were prepared by tip ultrasonication, and their MA behavior was investigated. The exfoliated Bi2O2Se nanosheets which show a minimum reflection loss (RLmin) of −36.99 dB at 10.86 GHz with a bandwidth of 1.7 GHz, outperforming their unexfoliated counterparts and traditional absorbers governed by van der Waals stacking. This work reveals the dielectric properties and MA performance of electrostatically stacked nanosheets, but also offers a new insight for designing highly-efficient electromagnetic compatibility regimes.

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Publication Details

Journal
ACS Omega
Published
2026-09-14
DOI
https://doi.org/10.1021/acsomega.6c06163
Primary Topic
Electromagnetic wave absorption materials
Type
article
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article

Interlayer Electrostatic Interaction Boosts Microwave Attenuation in Bi2O2Se Nanosheets

Changjiu Teng, Shilong Zhao, Wenjun Chen, Hao Yan et al.
ACS Omega
Electromagnetic wave absorption materials
article

Interlayer Electrostatic Interaction Boosts Microwave Attenuation in Bi2O2Se Nanosheets

Changjiu Teng, Shilong Zhao, Wenjun Chen, Hao Yan, Xiangchao Weng, Zhen Zhang, Jiaping Zeng
article en

Abstract

Abstract Layered nanosheets play a role in promoting electromagnetic attenuation in the field of microwave absorption (MA). Compared to interlayer van der Waals force, nanosheets with intrinsic electrostatic interaction are promising to optimize the microwave dissipation between layers. Bi2O2Se consists of alternating [Bi2O2]2+ and [Se]2– layers coupled through intrinsic electrostatic interactions, which may provide additional polarization sites and interlayer charge-transfer pathways. However, the MA performance of these materials has not been reported yet, since their exfoliation behavior and intrinsic polarization mechanisms remain to be explored. Here, Bi2O2Se nanosheets were prepared by tip ultrasonication, and their MA behavior was investigated. The exfoliated Bi2O2Se nanosheets which show a minimum reflection loss (RLmin) of −36.99 dB at 10.86 GHz with a bandwidth of 1.7 GHz, outperforming their unexfoliated counterparts and traditional absorbers governed by van der Waals stacking. This work reveals the dielectric properties and MA performance of electrostatically stacked nanosheets, but also offers a new insight for designing highly-efficient electromagnetic compatibility regimes.

ACS Omega
Foshan University (CN), Tsinghua University (CN)
Affordable and clean energy
Openalex Percentile: Top 28%
Electromagnetic wave absorption materials
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Interlayer Electrostatic Interaction Boosts Microwave Attenuation in Bi2O2Se Nanosheets — Changjiu Teng, Shilong Zhao, et al. · ACS Omega (2026) | TGRS Research Map | TGRS