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Self-Assembly of Hydrophobic and Self-Healing Bionanocomposite-Coated Controlled-Release Fertilizers
- Source :
- ACS applied materialsinterfaces. 12(24)
- Publication Year :
- 2020
-
Abstract
- Self-healing materials have received increased attention because of their automatic detecting and repairing damage function. In this paper, a novel self-assembly and self-healing bionanocomposite was developed as a coating material for controlled release fertilizers. This nanotechnology-enabled coating is environmentally friendly and highly efficient and possesses a tunable nutrient-releasing characteristic. In the synthesis process, bio-based polyurethane coated urea (BPCU) was prepared by the reaction of bio-polyols with isocyanate. The BPCU was then modified by the layer-by-layer technology to prepare self-assembling modified BPCU (SBPCU). Last, hollow nano-silica (HNS) particles loaded with the sodium alginate (SA) were used to modify SBPCU to fabricate of self-assembling and self-healing BPCU (SSBPCU). The results show that the self-assembled materials were synthesized through electrostatic adsorption. The self-healing was observed through scanning electron microscopy and 3D-X-ray computed tomography, revealing the mechanism was that the repair agent released from HNS reacted with the curing agent to block the pore channels and cracks of the coating. As a result, the SSBPCU exhibited the highest hydrophobicity and surface roughness and thus the slowest release rate. For the first time, this work has designed a novel strategy to solve the bottleneck problem that restricts the development of a controlled-release fertilizer.
- Subjects :
- Materials science
010504 meteorology & atmospheric sciences
Layer by layer
010501 environmental sciences
engineering.material
01 natural sciences
Isocyanate
Controlled release
chemistry.chemical_compound
Coating
chemistry
Chemical engineering
Coated urea
Self-healing
engineering
General Materials Science
Self-assembly
0105 earth and related environmental sciences
Polyurethane
Subjects
Details
- ISSN :
- 19448252
- Volume :
- 12
- Issue :
- 24
- Database :
- OpenAIRE
- Journal :
- ACS applied materialsinterfaces
- Accession number :
- edsair.doi.dedup.....de45563a4b80a9a67ae468be8692f295