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February 11, 2026Inorganics0 citationsOpen Access

ZrO2 Coating for Surface Functionalization of Jianshui Purple Pottery: A Sol-Gel Approach with Antibacterial Performance

ZGZhenwei GanJHJinlin HeJLJing Liu

Key Points

  • This research aims to develop ZrO2 coatings with antibacterial properties for Jianshui purple pottery through sol-gel techniques.
  • Screening various ZrO(OH)2 sols for optimal coating characteristics.
  • Applying ZrO(OH)2 sol to 800 °C baked Jianshui purple pottery for effective surface coating.
  • Incorporating Y3+ doping and adjusting sol particle size to enhance coating stability.
  • Loading silver nanoparticles onto the ZrO2 coatings to test antibacterial efficacy.
  • Achieved uniform and tight ZrO2 coating on Jianshui purple pottery.
  • Coated samples exhibited an antibacterial rate of 32.7% after accelerated desorption.
  • Research indicates the potential for practical applications in functional pottery.

Abstract

The surface decoration techniques, such as incising-filling, glaze spraying, wood firing, and secondary low-temperature refiring, etc., have been widely used for traditional potteries, such as Jianshui purple pottery. These surface modifications are mainly for artistic expression, whereas functional surface modification has barely been reported. The development of novel coating materials and processes is an alternative path for the innovation of traditional pottery. However, the surface functional materials often peel or detach from the pottery body after high-temperature sintering. It is thus imperative to develop coating materials and processes with robust adhesion and accommodation for secondary functional materials. Through the screening of different ZrO(OH)2 sols and coating processes, the coating of ZrO(OH)2 sol on the 800 °C baked Jianshui purple pottery achieved uniform and tight surface coating. Reducing the colloidal particle size and particle concentration in the sol, as well as Y3+ doping, is also conductive to the structural stability of the coatings. Additional loading of silver nanoparticles onto the ZrO2 coating layer effectively endows the pottery with antibacterial performance. The coated samples loaded with silver nanoparticles exhibited an antibacterial rate of 32.7% after accelerated desorption, demonstrating potential for functional pottery applications.

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Cite This Study

Gan et al. (2026) studied this question.

synapsesocial.com/papers/698c1cb3267fb587c655f508https://doi.org/10.3390/inorganics14020049
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