Lightweight Soft X-ray Shielding in β-Ga2O3-Coated Natural Wood Evaluated Using a Ga2O3 Schottky Barrier Diode Detector

Abstract Soft X-ray shielding under stringent mass constraints is increasingly important for near-space aviation, small satellite platforms, and other weight-sensitive aerospace systems. Natural wood is an attractive lightweight and biobased structural core; however, its attenuation capability at keV range photon energies is strongly governed by bulk density. In this study, we enhance the soft X-ray shielding performance of natural wood by introducing a spray-deposited β-Ga2O3 particle-containing coating formed with a binder matrix. The transmitted X-ray intensity was quantified using a β-Ga2O3 Schottky barrier diode detector under 5.0 kVp irradiation. Three wood species with different bulk densities─cedar, oak, and birch, with densities of 0.289, 0.697, and 0.913 g·cm–3, respectively─were prepared with a fixed thickness of 1 mm. Cross-sectional scanning electron microscopy and energy-dispersive X-ray spectroscopy reveal the formation of an approximately 100 μm thick near-surface wood–inorganic hybrid region, in which Ga and O signals coexist within the coated wood structure. Compared with uncoated wood, the β-Ga2O3-containing coating consistently reduces the transmitted X-ray-induced current for all wood species, leading to improved shielding efficiency. Notably, cedar, the lowest density wood, exhibits the largest relative improvement after coating, indicating that a thin inorganic coating can effectively compensate for the intrinsically limited attenuation of lightweight wood cores while imposing only a modest mass penalty. These results demonstrate a practical wood–inorganic composite architecture for lightweight soft X-ray shielding and suggest that low-density wood substrates can provide a favorable mass–performance balance when combined with β-Ga2O3-based surface hybridization.

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Publication Details

Journal
ACS Omega
Published
2026-10-03
DOI
https://doi.org/10.1021/acsomega.6c05989
Primary Topic
Radiation Shielding Materials Analysis
Type
article
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article

Lightweight Soft X-ray Shielding in β-Ga2O3-Coated Natural Wood Evaluated Using a Ga2O3 Schottky Barrier Diode Detector

Dae‐Woo Jeon, Jihyeon Park, Wan Sik Hwang, Woo-Min Cho et al.
ACS Omega
Radiation Shielding Materials Analysis
article

Lightweight Soft X-ray Shielding in β-Ga2O3-Coated Natural Wood Evaluated Using a Ga2O3 Schottky Barrier Diode Detector

Dae‐Woo Jeon, Jihyeon Park, Wan Sik Hwang, Woo-Min Cho, Sunjae Kim, Heejoong Ryou, Jinho Kim, Jiwon Kwak, Soon-il Kwon, Hyun-Ung Oh, Dowon Lee
article en

Abstract

Abstract Soft X-ray shielding under stringent mass constraints is increasingly important for near-space aviation, small satellite platforms, and other weight-sensitive aerospace systems. Natural wood is an attractive lightweight and biobased structural core; however, its attenuation capability at keV range photon energies is strongly governed by bulk density. In this study, we enhance the soft X-ray shielding performance of natural wood by introducing a spray-deposited β-Ga2O3 particle-containing coating formed with a binder matrix. The transmitted X-ray intensity was quantified using a β-Ga2O3 Schottky barrier diode detector under 5.0 kVp irradiation. Three wood species with different bulk densities─cedar, oak, and birch, with densities of 0.289, 0.697, and 0.913 g·cm–3, respectively─were prepared with a fixed thickness of 1 mm. Cross-sectional scanning electron microscopy and energy-dispersive X-ray spectroscopy reveal the formation of an approximately 100 μm thick near-surface wood–inorganic hybrid region, in which Ga and O signals coexist within the coated wood structure. Compared with uncoated wood, the β-Ga2O3-containing coating consistently reduces the transmitted X-ray-induced current for all wood species, leading to improved shielding efficiency. Notably, cedar, the lowest density wood, exhibits the largest relative improvement after coating, indicating that a thin inorganic coating can effectively compensate for the intrinsically limited attenuation of lightweight wood cores while imposing only a modest mass penalty. These results demonstrate a practical wood–inorganic composite architecture for lightweight soft X-ray shielding and suggest that low-density wood substrates can provide a favorable mass–performance balance when combined with β-Ga2O3-based surface hybridization.

ACS Omega
University of Oslo (NO), Korea Aerospace University (KR), Korea Institute of Ceramic Engineering and Technology (KR)
Openalex Percentile: Top 26%
Radiation Shielding Materials Analysis
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