A Compact Resistively Loaded Metamaterial Absorber for 2.4 GHz RF Energy Harvesting With Impedance‐Matched Rectifier Analysis

ABSTRACT This work presents a compact resistively loaded square‐diamond resonator metamaterial absorber for RF energy harvesting at 2.4 GHz. The unit cell has an electrical size of 0.16 λ × 0.16 λ × 0.013 λ and incorporates symmetrically positioned lumped resistive loads to support RF power extraction. Full‐wave CST simulation shows 99.92% absorption at resonance, with the retrieved surface impedance indicating close matching to free‐space impedance. The symmetric square‐diamond geometry provides a polarization‐insensitive response under normal incidence and maintains stable simulated absorption for both TE‐ and TM‐polarized oblique excitation up to 60°. Surface‐current, electric‐field, impedance, and equivalent‐circuit analyses indicate that the absorption behavior is primarily determined by the induced current distribution, field localization, and controlled dissipation through the resistive loads. The simulated RF power‐transfer efficiency to the resistive loads reaches 96.74% at 2.4 GHz. The impedance‐matched two‐diode rectifier provides 75.7% AC‐to‐DC conversion efficiency at RL = 2.36 kΩ, resulting in a simulated cascaded RF‐to‐DC efficiency of 73.23% at 5 dBm input power. A fabricated 4 × 2 absorber array is experimentally characterized, and the measured absorption peak remains close to the simulated resonance. Within this validation scope, the proposed RL‐SDR‐MMA provides a compact RF capture surface for 2.4 GHz energy harvesting, supported by simulated rectifier‐stage conversion analysis.

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Publication Details

Journal
Advanced Electronic Materials
Published
2026-09-22
DOI
https://doi.org/10.1002/aelm.70597
Primary Topic
Energy Harvesting in Wireless Networks
Type
article
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article

A Compact Resistively Loaded Metamaterial Absorber for 2.4 GHz RF Energy Harvesting With Impedance‐Matched Rectifier Analysis

Md. Murad Kabir Nipun, Md. Moinul Islam
Advanced Electronic Materials
Energy Harvesting in Wireless Networks
article

A Compact Resistively Loaded Metamaterial Absorber for 2.4 GHz RF Energy Harvesting With Impedance‐Matched Rectifier Analysis

Md. Murad Kabir Nipun, Md. Moinul Islam
article en

Abstract

ABSTRACT This work presents a compact resistively loaded square‐diamond resonator metamaterial absorber for RF energy harvesting at 2.4 GHz. The unit cell has an electrical size of 0.16 λ × 0.16 λ × 0.013 λ and incorporates symmetrically positioned lumped resistive loads to support RF power extraction. Full‐wave CST simulation shows 99.92% absorption at resonance, with the retrieved surface impedance indicating close matching to free‐space impedance. The symmetric square‐diamond geometry provides a polarization‐insensitive response under normal incidence and maintains stable simulated absorption for both TE‐ and TM‐polarized oblique excitation up to 60°. Surface‐current, electric‐field, impedance, and equivalent‐circuit analyses indicate that the absorption behavior is primarily determined by the induced current distribution, field localization, and controlled dissipation through the resistive loads. The simulated RF power‐transfer efficiency to the resistive loads reaches 96.74% at 2.4 GHz. The impedance‐matched two‐diode rectifier provides 75.7% AC‐to‐DC conversion efficiency at RL = 2.36 kΩ, resulting in a simulated cascaded RF‐to‐DC efficiency of 73.23% at 5 dBm input power. A fabricated 4 × 2 absorber array is experimentally characterized, and the measured absorption peak remains close to the simulated resonance. Within this validation scope, the proposed RL‐SDR‐MMA provides a compact RF capture surface for 2.4 GHz energy harvesting, supported by simulated rectifier‐stage conversion analysis.

Advanced Electronic Materials
Chittagong University of Engineering & Technology (BD), International University of Business Agriculture and Technology (BD)
Affordable and clean energy
Openalex Percentile: Top 20%
Energy Harvesting in Wireless Networks
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A Compact Resistively Loaded Metamaterial Absorber for 2.4 GHz RF Energy Harvesting With Impedance‐Matched Rectifier Analysis — Md. Murad Kabir Nipun, Md. Moinul Islam · Advanced Electronic Materials (2026) | TGRS Research Map | TGRS