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TiO2-based Protective Coatings for Buildings and Monuments

  • Northwest University China
  • Northwestern Polytechnical University Xian
  • National Research Council of Italy

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

Owing to the self-cleaning, de-polluting, and antibiofouling properties, the development of TiO2 -based materials has enabled the application of multifunctional protective coatings for buildings and monuments. This chapter begins with a brief introduction to the basic principles of stone degradation and protection. By focusing on protective coatings, the major research directions (e.g., TiO2 dispersions and/or nanocomposites, hydrophilic, and/or hydrophobic) in the field are categorized. The advancements in coating preparation and application are reviewed. The synthesis and/or formulation, characterization, and performance evaluation in the lab and in situ are described. Some practical case studies are also presented. Besides, the essential working mechanisms underlying the protective performance are discussed. Last, prospects in the field are outlined. These findings indicate that, to scale up the preparation and application, in-depth studies are required in various aspects: (i) understanding the physicochemical phenomena occurring at the coating-substrate interfaces and (ii) achieving satisfactory equilibrium between the photoactivity and stability of coatings.

Original languageEnglish
Title of host publicationNanostructured TiO 2
Subtitle of host publicationSynthesis, Photocatalytic Properties, and Applications
Publisherwiley
Pages497-514
Number of pages18
ISBN (Electronic)9783527848348
ISBN (Print)9783527354177
DOIs
StatePublished - 1 Jan 2025

Keywords

  • building materials
  • coating-substrate interfaces
  • heritage and artworks
  • hydrophilicity
  • hydrophobicity
  • multifunctionality
  • protective coatings
  • self-cleaning
  • titanium dioxide
  • working mechanisms

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