Magnetically Directed Co-nanoinitiators for Cross-Linking Adhesives and Enhancing Mechanical Properties

التفاصيل البيبلوغرافية
العنوان: Magnetically Directed Co-nanoinitiators for Cross-Linking Adhesives and Enhancing Mechanical Properties
المؤلفون: Benjamin Chan, Wen Siang Lew, Matthew Wei Ming Tan, Haruethai Kongcharoen, Panyawut Tonanon, Birte Coester, Jing-Hao Ciou, Fei Yu, Wei Church Poh, Izzat Aziz, Pooi See Lee, Richard D. Webster
المساهمون: School of Physical and Mathematical Sciences, School of Materials Science and Engineering
المصدر: ACS applied materialsinterfaces. 13(48)
سنة النشر: 2021
مصطلحات موضوعية: chemistry.chemical_classification, Materials science, Materials [Engineering], Radical polymerization, Anaerobic Adhesive, Nanotechnology, Polymer, Redox, Triethylene Glycol Dimethacrylate, chemistry, Polymerization, Magnet, Dendrimer, Chemistry [Science], General Materials Science, Adhesive, Curing (chemistry)
الوصف: Magnetically directed localized polymerization is of immense interest for its extensive impacts and applications in numerous fields. The use of means untethered from an external magnetic field to localize initiation of polymerization to develop a curing system is a novel concept, with a sustainable, efficient, and eco-friendly approach and a wide range of potential in both science and engineering. However, the conventional means for the initiation of polymerization cannot define the desirable location of polymerization, which is often exacerbated by the poor temporal control in the curing system. Herein, the copper-immobilized dendrimer-based magnetic iron oxide silica (MNPs-G2@Cu2+) co-nanoinitiators are rationally designed as initiators for redox radical polymerization. The nanoinitiators are magnetically responsive and therefore enable localized polymerization using an external magnetic field. In this work, anaerobic polymerization of an adhesive composed of triethylene glycol dimethacrylate, tert-butyl peroxybenzoate, and MNPs-G2@Cu2+ as the magnetic co-nanoinitiators has been investigated. The use of a magnet locates and promotes redox free radical polymerization through the synergistic functions between peroxide and MNPs-G2@Cu2+ co-nanoinitiators. The mechanical properties of the resulting polymer are considerably reinforced because the MNPs-G2@Cu2+ co-nanoinitiators concurrently play another crucial role as nanofillers. This strategy provides a novel approach for magnetically tunable localized polymerization, which allows new opportunities to govern the formulation of advanced adhesives through polymerization under hazard-free conditions for various promising applications. Ministry of Education (MOE) Nanyang Technological University H.K. is supported by a SINGA scholarship awarded by Nanyang Technological University. The project is funded by Ministry of Education AcRF Tier 1, Project RG63/20, Award 2020-T1-001- 165.
تدمد: 1944-8252
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1d16ee5c61ba3262fbdb6f2e5d6ae932
https://pubmed.ncbi.nlm.nih.gov/34843200
حقوق: OPEN
رقم الأكسشن: edsair.doi.dedup.....1d16ee5c61ba3262fbdb6f2e5d6ae932
قاعدة البيانات: OpenAIRE