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High-Performance Supramolecular Organogel Adhesives for Antimicrobial Applications in Diverse Conditions

Supramolecular organogel coatings that can disinfect the deposited microbial pathogens are emerging as an effective vehicle to prevent pathogen transmission. However, the development of anti-pathogen supramolecular adhesives with mechanical robustness and controlled oil inclusion is technically chal...

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Published in:ACS applied materials & interfaces 2023-09, Vol.15 (37), p.44194-44204
Main Authors: Lu, Gang, Chen, Cien, Wang, Zhaoyue, Wu, Xuelian, Huang, Xin, Luo, Jingdong, Wang, Xun-Li, He, Ming-Liang, Yao, Xi
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cited_by cdi_FETCH-LOGICAL-a307t-8d4e2c48c9d5fa47d17f6a530c40aa24680ed9b519da50735d4b510c0f22a4503
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container_end_page 44204
container_issue 37
container_start_page 44194
container_title ACS applied materials & interfaces
container_volume 15
creator Lu, Gang
Chen, Cien
Wang, Zhaoyue
Wu, Xuelian
Huang, Xin
Luo, Jingdong
Wang, Xun-Li
He, Ming-Liang
Yao, Xi
description Supramolecular organogel coatings that can disinfect the deposited microbial pathogens are emerging as an effective vehicle to prevent pathogen transmission. However, the development of anti-pathogen supramolecular adhesives with mechanical robustness and controlled oil inclusion is technically challenging. Here, we report supramolecular adhesives with mechanical integrity and robust interfacial adhesion over a wide range of biogenic antimicrobial oil. Bifunctional monomers are synthesized and assembled into linear polymers with semicrystalline stackings through hierarchical hydrogen bonds, where incorporated bioactive oil could regulate the semicrystalline stackings into nanosized crystalline domains through intermolecular hydrogen bonds. The abundant bonding motifs provided by the supramolecular cross-linked networks could accommodate oil molecules with high inclusion capability and provide more interfacial binding sites with high adhesion strength, and the nanosized crystalline domains could stabilize the organogel network and compensate for the interactions with oil molecules to enhance structural and mechanical stability. In addition, rapid healing, robust adhesion, and antimicrobial and antiviral properties of the resultant organogel coatings are demonstrated. This study paves the way for the development of high-performance antimicrobial supramolecular adhesives with controlled oil inclusion, showing potential applications in soft robotics, tissue engineering, and biomedical devices.
doi_str_mv 10.1021/acsami.3c07295
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title High-Performance Supramolecular Organogel Adhesives for Antimicrobial Applications in Diverse Conditions
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