Innovative Synthesis of Waterborne Styrene–Acrylic Resin Tailored for Bamboo
Fengrong Xin, Qing Dong, Yuanwei Pan, Yuxuan Hu, Xiao Feng, Zheng Yang, Yilei He, Dandan Peng, Lu Li, Qun Fang, Zhehong Shen

TL;DR
A new water-based resin improves bamboo's durability by making it more water-resistant, harder, and longer-lasting under UV exposure.
Contribution
The study introduces a novel water-based styrene–acrylic resin modified with vinyltriethoxysilane for enhanced bamboo coating performance.
Findings
Vinyltriethoxysilane-modified resin achieved a Zeta potential of −24.2 mV at 10% dosage, indicating improved emulsion stability.
Coated bamboo showed a water contact angle of 100.56 ± 1.11°, 4H pencil hardness, and adhesion grade 1, enhancing waterproofing and durability.
UV aging tests showed optimal performance at 10% dosage with ΔE of 3.00 ± 1.81 and 78% gloss retention.
Abstract
Bamboo, a fast-growing biomass material with excellent mechanical properties, is widely used in furniture and construction. However, its susceptibility to moisture, cracking, and aging limits its durability. While acrylic resins offer good weather and water resistance, the relationship between resin formulation and the performance of bamboo remains unclear. This study developed a novel water-based styrene–acrylic resin tailored for bamboo, systematically investigating the relationships between resin formulation, coating structure, and performance. Results show that vinyltriethoxysilane-modified styrene–acrylic resin outperforms hydroxypropyl-acrylate-modified and unmodified styrene–acrylic. At a 10% dosage of vinyltriethoxysilane, the Zeta potential reached −24.2 mV, indicating enhanced emulsion stability. The coated bamboo exhibited a water contact angle of 100.56 ± 1.11°, a pencil…
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Taxonomy
TopicsBamboo properties and applications · Natural Fiber Reinforced Composites · Wood Treatment and Properties
