材料科学
聚氨酯
涂层
异氰酸酯
共价键
韧性
氨基甲酸酯
极限抗拉强度
复合材料
二嗪
断裂韧性
化学工程
有机化学
化学
工程类
作者
Zhen Yu,Dongdong Cheng,Bin Gao,Yuanyuan Yao,Chenghao Liu,Junyin Li,Chun Wang,Jiazhuo Xie,Shugang Zhang,Li Zhao,Yuechao Yang
标识
DOI:10.1021/acsami.2c14672
摘要
Bio-based polyurethanes are promising for the controlled release of nutrients and fertilizers, but their toughness and plasticity need to be improved. We developed a smooth, dense, elastic, and indestructible bio-based polyurethane (BPU) coating with a nutrient controlled release ∼150% superior, a tensile strength ∼300% higher, and a toughness ∼1200% higher than those for the original BPU coating. Through a one-step reaction of soybean oil polyols (accounting for more than 60%), isocyanate, and benzil dioxime, the dynamic covalent network based on oxime-carbamate replaces part of irreversible covalent cross-linking. The dynamic fracture-bonding reaction in the modified coating BPU can effectively promote the hydrogen bond recombination and oxime-carbamate chain migration in the coating process, which avoids the structural defects caused by coating tear and fertilizer collision. This work provides a simple and versatile strategy for building controlled-release fertilizer coatings.
科研通智能强力驱动
Strongly Powered by AbleSci AI