PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 6, 2026Polymers5 citationsOpen Access

Photodegradation Mechanisms and Anti-Aging Strategies of Wood Coatings: A Comprehensive Review

View Full Paper
MXMeng XiaNanjing Forestry UniversityHGHanyun GaoNanjing Forestry UniversityXFXinhao FengNanjing Forestry University

Key Points

  • This review aims to examine photodegradation mechanisms and anti-aging strategies in wood coatings.
  • Comprehensive literature review on photodegradation and anti-aging strategies.
  • Analysis of factors influencing wood coating durability and performance.
  • Discussion of mechanisms like polymer chain scission and photo-oxidation.
  • Photodegradation leads to reduced mechanical properties and service life of wood coatings.
  • Anti-aging strategies such as antioxidants can enhance coating durability.
  • Nanotechnology offers promising approaches for improving wood coating performance.

Abstract

Wood coatings play a critical role in protecting wood substrates from environmental degradation, particularly ultraviolet (UV)-induced photodegradation. This review comprehensively examines the mechanisms of wood coating photodegradation, the factors influencing their durability, and current anti-aging strategies. Photodegradation arises from polymer chain scission, chemical structure reorganization, and photo-oxidation of lignin and cellulose, leading to coating chalking, cracking, gloss loss, and color changes, ultimately compromising wood mechanical properties and service life. Key anti-aging strategies include UV absorbers, which convert harmful UV radiation into heat; hindered amine light stabilizers (HALSs) that capture free radicals and quench excited-state molecules; barrier and shielding materials that form dense physical or nanostructured networks to block UV penetration and enhance mechanical and water resistance; and antioxidants that neutralize free radicals or decompose peroxides at the molecular level. Each approach can be employed individually or synergistically to enhance coating durability. Challenges remain in achieving long-term outdoor stability, balancing transparency and UV shielding, optimizing nanoparticle dispersion, and maintaining the activity of natural antioxidants. Future research should focus on multifunctional composite coatings integrating bio-based materials and nanotechnology, smart responsive systems, adaptive protection mechanisms, and standardized long-term evaluation protocols. These advancements will facilitate the development of high-performance, sustainable wood coatings and promote the value-added utilization of wood resources.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Xia et al. (2026) studied this question.

synapsesocial.com/papers/69fa986a04f884e66b53215chttps://doi.org/10.3390/polym18091090
Ask AI
Helpful
Bookmark
Share
View Full Paper