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Article

Simultaneous Enhancement of Mildew Resistance and Dimensional Stability of Bamboo with a Facile One-Step In Situ Growth of ZnO/TA/Ag Composites

1
Key Laboratory of State Forestry and Grassland Administration on Highly-Efficient Utilization of Forestry Biomass Resources in Southwest China, Southwest Forestry University, Kunming 650224, China
2
Institute of Highland Forest Science, Chinese Academy of Forestry, Kunming 650233, China
3
Yunnan Key Laboratory of Breeding and Utilization of Resource Insects, Kunming 650224, China
4
School of Pharmacy, Xinyang Agriculture and Forestry University, Xinyang 464000, China
*
Authors to whom correspondence should be addressed.
Molecules 2026, 31(10), 1737; https://doi.org/10.3390/molecules31101737
Submission received: 24 April 2026 / Revised: 15 May 2026 / Accepted: 18 May 2026 / Published: 19 May 2026

Abstract

Bamboo is a renewable and fast-growing biomass resource with limited utilization and service life owing to its susceptibility to mold. Conventional nano-modification methods, particularly two-step approaches, are limited by weak interfacial bonding between nanoparticles and the bamboo substrate, complex processing, and an inability to simultaneously enhance antimildew performance and dimensional stability. To address these limitations, we developed a one-step hydrothermal method involving the use of tannic acid (TA) for in situ fabrication of ZnO/TA/Ag composite particles on bamboo surfaces. Process parameters were optimized to 100 °C, 10 h, and a zinc acetate-to-tannic acid molar ratio of 20:1. The modified bamboo was characterized using Fourier-transform infrared spectroscopy, X-ray photoelectron spectroscopy, X-ray diffraction, scanning electron microscopy coupled with energy-dispersive spectroscopy, and thermogravimetric analysis. We demonstrated that ZnO/TA/Ag composite particles were successfully loaded onto the bamboo surface, thus improving the all-around performance of the bamboo simultaneously. Antimildew activity against Aspergillus niger and Penicillium citrinum increased from grade 4 in untreated bamboo to grades 1 and 0, respectively; water absorption decreased by 52.85%, and anti-swelling efficiency reached 30.41%, indicating improved mold resistance and dimensional stability. Thus, our technique could serve as a green and efficient one-step in situ modification strategy for high-performance functionalization of bamboo, making it suitable for applications in humid outdoor and indoor environments.
Keywords: bamboo; ZnO/TA/Ag composites; Aspergillus niger; Penicillium citrinum; antimildew resistance; dimensional stability bamboo; ZnO/TA/Ag composites; Aspergillus niger; Penicillium citrinum; antimildew resistance; dimensional stability
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MDPI and ACS Style

Xu, J.; Ma, J.; Liu, L.; Tang, B.; Zhang, H.; Zhang, W.; Shi, Z. Simultaneous Enhancement of Mildew Resistance and Dimensional Stability of Bamboo with a Facile One-Step In Situ Growth of ZnO/TA/Ag Composites. Molecules 2026, 31, 1737. https://doi.org/10.3390/molecules31101737

AMA Style

Xu J, Ma J, Liu L, Tang B, Zhang H, Zhang W, Shi Z. Simultaneous Enhancement of Mildew Resistance and Dimensional Stability of Bamboo with a Facile One-Step In Situ Growth of ZnO/TA/Ag Composites. Molecules. 2026; 31(10):1737. https://doi.org/10.3390/molecules31101737

Chicago/Turabian Style

Xu, Juan, Jinju Ma, Lanxiang Liu, Baoshan Tang, Hong Zhang, Wenwen Zhang, and Zhengjun Shi. 2026. "Simultaneous Enhancement of Mildew Resistance and Dimensional Stability of Bamboo with a Facile One-Step In Situ Growth of ZnO/TA/Ag Composites" Molecules 31, no. 10: 1737. https://doi.org/10.3390/molecules31101737

APA Style

Xu, J., Ma, J., Liu, L., Tang, B., Zhang, H., Zhang, W., & Shi, Z. (2026). Simultaneous Enhancement of Mildew Resistance and Dimensional Stability of Bamboo with a Facile One-Step In Situ Growth of ZnO/TA/Ag Composites. Molecules, 31(10), 1737. https://doi.org/10.3390/molecules31101737

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