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In view of the micro/nanostructure tunability of colloid particles, they acted as agrichemical delivery systems. Herein, supra-amphiphilic colloids were fabricated using a host-guest interfacial recognition-architected emulsion template strategy and controlled their agricultural interfacial interactions with the superhydrophobic target surface. Interestingly, the supramolecular interfacial system possessed redox-stimulated molecular reconfigurability by regulating aggregation/disaggregation behaviors. Therefore, the surface roughness of silver willow-like supramolecular colloids was readily modulated by tuning the micro/nanointerfaces of the emulsion template, which exhibited a topology and pliability that allowed them to adapt to the micro/nanostructures of leaf surfaces. It simultaneously solved comprehensive problems of adhesion, bounding, and rainwashing of pesticide droplets by the multiscale coupling effect. Intriguingly, the pesticide retention dominantly depended on the degree of surface roughness of silver willow-like supramolecular colloids, and the most roughened one showed greatest in vitro antifungal efficiency against , reaching 91.8% even through multiple rainwashing. Results disclosed that the supra-amphiphilic colloids addressed the entire application processes for promoting the development of sustainable agricultural science.
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http://dx.doi.org/10.1021/acsami.4c11924 | DOI Listing |
Int J Biol Macromol
May 2025
School of Pharmacy, Anhui University of Chinese Medicine, 350 Longzihu Road, Hefei 230012, Anhui Province, China. Electronic address:
Achieving high bioavailability of dendrobine (DDB) necessitates the development of simplified available and efficient delivery systems. Pickering emulsions (PEs) derived from biomass represent a promising option. However, the physicochemical properties of PEs interfacial films were insufficient to prevent DDB leakage, thereby reducing bioavailability.
View Article and Find Full Text PDFACS Appl Mater Interfaces
December 2024
School of Chemistry and Chemical Engineering, Hainan University, 58 Renmin Road, Haikou, Hainan Province 570228, China.
In view of the micro/nanostructure tunability of colloid particles, they acted as agrichemical delivery systems. Herein, supra-amphiphilic colloids were fabricated using a host-guest interfacial recognition-architected emulsion template strategy and controlled their agricultural interfacial interactions with the superhydrophobic target surface. Interestingly, the supramolecular interfacial system possessed redox-stimulated molecular reconfigurability by regulating aggregation/disaggregation behaviors.
View Article and Find Full Text PDFJ Colloid Interface Sci
September 2023
Key Laboratory of Advanced Materials of Tropical Island Resources, Ministry of Education, College of Chemical Engineering and Technology, Hainan University, 58 Renmin Road, Haikou 570228, Hainan Province, China. Electronic address:
The soft interfacial template-assisted confined self-assembly of block copolymers (BCPs) guiding colloidal aggregates has been extensively investigated by interfacial instability. Whether the macromolecular polymer architectonics possessed stimulus-responsive self-regulated structural controllability more readily implement the morphological diversity of colloidal aggregates. Herein, we in-situ constructed the alginate-modified β-cyclodextrin/azobenzene-functionalized alkyl chains (Alg-β-CD/AzoC12) system by supramolecular host-guest interfacial recognition-engineered strategy, in which possessed photo-stimulated responsive structural reconfigurability by modulating assembly/disassembly behaviors between CD and Azo at oil/water interface.
View Article and Find Full Text PDFACS Appl Mater Interfaces
November 2021
Key Laboratory of Advanced Materials of Tropical Island Resources, Ministry of Education, College of Chemical Engineering and Technology, Hainan University, 58 Renmin Road, Haikou 570228, Hainan, China.