Aller au contenu principal
2026 article

Effects of Catalyst Complex on In Situ Polymerization and Formation Processes of Reactive Polyurethane Coatings

1Citations signalées, ce qui n’est pas une note de qualité
3Institutions déclarées
2Pays d’affiliation déclarés

Rattachement africain : cn, de. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Reactive polyurethane (RPU) coatings are prepared via simultaneous polymerization and formation without any solvent. Therefore, it not only lowers the total organic carbon (TOC) emissions but also reduces energy consumption. However, its polymerization rate is relatively low at room temperature, and the whole process takes longer than 120 min. Although heating can enhance the rate, it also makes controlling the reaction more difficult. In addition, the present single catalyst is very sensitive to humidity. At high humidity, polyaddition of RPU cannot be efficiently achieved, significantly limiting mechanical properties. To overcome these drawbacks, the effects of selected catalysts on the microstructure evolution during the in situ polymerization and formation process of RPU coatings are investigated. Although the whole process still contains three stages as chain extension, gelation, and microphase separation, the polymerization rate of RPU coatings can be controlled by optimizing the mass ratio of the catalyst complex containing dibutyltin dilaurate (DBTDL) and 1,4-diazabicyclo[2.2.2]octane (DABCO). When the mass ratio of DBTDL to DABCO is 1:1, the polymerization rate is 44% faster than with the single catalyst DBTDL. Simultaneously, the breaking strength (14.56 MPa) and breaking elongation (813%) of the RPU coatings prepared by the catalyst complex are almost unchanged. The acceleration is mainly caused by the steric hindrance effect of the catalyst complex, which improves the catalytic selectivity and the interaction between -NCO and -OH groups in polyol. Moreover, the preparation process is less sensitive to humidity when the catalyst complex is applied. Even at 60% humidity, the final gel content can reach 92.1 ± 1.3%, 9.5% higher than that with the single catalyst DBTDL (84.1 ± 1.0%). Thus, the present catalyst complex can significantly shorten processing time and reduce humidity-related effects during preparation, thereby benefiting the PU industry.

Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.

Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Effects of Catalyst Complex on In Situ Polymerization and Formation Processes of Reactive Polyurethane Coatings
Date Crossref
16/04/2026
Éditeur
American Chemical Society (ACS)
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Où se fait cette recherche

  • Zhejiang Sci-Tech University pays non établi dans la notice
    Université ou école supérieure
  • Zhejiang Institute of Modern Textile Industry pays non établi dans la notice
    Structure de recherche
  • Technical University of Munich pays non établi dans la notice
    Université ou école supérieure
  • National Base for International Science and Technology Cooperation in Textiles and Consumer-Goods Chemistry and Zhejiang Provincial Engineering Research Center for Green and Low-Carbon Dyeing and Finishing pays non établi dans la notice
    Structure de recherche
  • Hexin Kuraray Micro Fiber (Haiyan) Co. Ltd. pays non établi dans la notice
    Entreprise
  • Zhejiang Provincial Innovation Center of Advanced Textile Technology pays non établi dans la notice
    Institution

Zhejiang Sci-Tech University, Zhejiang Institute of Modern Textile Industry et Technical University of Munich, avec 3 autres affiliations.

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Polymer composites and self-healingPhotopolymerization techniques and applicationsDendrimers and Hyperbranched Polymers

BNTIC News n’est pas le producteur de ces données. Les publications sont interrogées à la demande dans Crossref, OpenAIRE, DOAJ, Europe PMC, HAL, DataCite, AfricArXiv, ROR et la Banque mondiale, sans clé d’accès. OpenAlex reste optionnel. Aucun service payant n’est nécessaire et aucune donnée externe n’est enregistrée en base. Consulter les sources et leurs limites.