TY - JOUR
T1 - Applications of one-component moisture-curing polyurethanes in construction engineering
T2 - A comprehensive review
AU - Dai, Chang
AU - Li, Jiazhao
AU - Qiu, Xishun
AU - Wu, Chao
AU - Wang, Yifan
AU - Ma, Mingliang
AU - Pan, Ye Tang
N1 - Publisher Copyright:
© 2026 Published by Elsevier B.V.
PY - 2026/10
Y1 - 2026/10
N2 - One-component moisture-curable polyurethane (PU) is a class of reactive polymeric materials that complete the curing process upon exposure to ambient moisture. Owing to this intrinsic curing mechanism, it has been widely used in building sealing, waterproofing and corrosion protection, structural reinforcement, and grouting for underground engineering. In recent years, research on this system has increasingly focused on improving mechanical performance and long-term service stability through molecular formulation design and network structure optimization. Specifically, regulating crosslink density and the degree of microphase separation, introducing latent curing agents, incorporating nanofillers, and controlling curing pathways have all been regarded as effective modification strategies. Based on the above, this paper systematically reviews the chemical properties and curing reaction mechanisms of one-component moisture-cured polyurethanes. It focuses on analyzing the intrinsic relationship between structural design and performance enhancement in moisture-cured systems. Representative applications in the construction field are also discussed to evaluate the applicability and limitations of different formulation strategies. In addition, recent advances in durability, flame retardancy, self-healing behavior, intelligent responsive systems, and sustainable development are comprehensively reviewed. Finally, prospects are provided for the future development trends and potential research directions of such systems.
AB - One-component moisture-curable polyurethane (PU) is a class of reactive polymeric materials that complete the curing process upon exposure to ambient moisture. Owing to this intrinsic curing mechanism, it has been widely used in building sealing, waterproofing and corrosion protection, structural reinforcement, and grouting for underground engineering. In recent years, research on this system has increasingly focused on improving mechanical performance and long-term service stability through molecular formulation design and network structure optimization. Specifically, regulating crosslink density and the degree of microphase separation, introducing latent curing agents, incorporating nanofillers, and controlling curing pathways have all been regarded as effective modification strategies. Based on the above, this paper systematically reviews the chemical properties and curing reaction mechanisms of one-component moisture-cured polyurethanes. It focuses on analyzing the intrinsic relationship between structural design and performance enhancement in moisture-cured systems. Representative applications in the construction field are also discussed to evaluate the applicability and limitations of different formulation strategies. In addition, recent advances in durability, flame retardancy, self-healing behavior, intelligent responsive systems, and sustainable development are comprehensively reviewed. Finally, prospects are provided for the future development trends and potential research directions of such systems.
KW - Construction applications
KW - Curing mechanism
KW - Latent curing agents
KW - One-component moisture-curing polyurethanes
UR - https://www.scopus.com/pages/publications/105040760791
U2 - 10.1016/j.porgcoat.2026.110312
DO - 10.1016/j.porgcoat.2026.110312
M3 - Review article
AN - SCOPUS:105040760791
SN - 0300-9440
VL - 219
JO - Progress in Organic Coatings
JF - Progress in Organic Coatings
M1 - 110312
ER -