Electrosprayed Multi-Core Alginate Microcapsules as Novel Self-Healing Containers
نویسندگان
چکیده
Alginate microcapsules containing epoxy resin were developed through electrospraying method and embedded into epoxy matrix to produce a capsule-based self-healing composite system. These formaldehyde free alginate/epoxy microcapsules were characterized via light microscope, field emission scanning electron microscope, fourier transform infrared spectroscopy and thermogravimetric analysis. Results showed that epoxy resin was successfully encapsulated within alginate matrix to form porous (multi-core) microcapsules with pore size ranged from 5-100 μm. The microcapsules had an average size of 320 ± 20 μm with decomposition temperature at 220 °C. The loading capacity of these capsules was estimated to be 79%. Under in situ healing test, impact specimens showed healing efficiency as high as 86% and the ability to heal up to 3 times due to the multi-core capsule structure and the high impact energy test that triggered the released of epoxy especially in the second and third healings. TDCB specimens showed one-time healing only with the highest healing efficiency of 76%. The single healing event was attributed by the constant crack propagation rate of TDCB fracture test. For the first time, a cost effective, environmentally benign and sustainable capsule-based self-healing system with multiple healing capabilities and high healing performance was developed.
منابع مشابه
Proliferation and Differentiation of Mesenchymal Stem Cells Encapsulated in Miniaturized 3D Core of Alginate-Chitosan-Alginate (ACA) Microcapsules
Murine C3H10T1/2 cells were used as a model of mesenchymal stem cells (MSCs) in this study to investigate their capability of proliferation and differentiation in the miniaturized core of small (~100 μm) alginate-chitosan-alginate (ACA) microcapsules. The results show that the cells can survive and proliferate well in the microcapsules, particularly those with a liquid core. Moreover, successfu...
متن کاملCore-shell hydrogel microcapsules for improved islets encapsulation.
Islets microencapsulation holds great promise to treat type 1 diabetes. Currently used alginate microcapsules often have islets protruding outside capsules, leading to inadequate immuno-protection. A novel design of microcapsules with core-shell structures using a two-fluid co-axial electro-jetting is reported. Improved encapsulation and diabetes correction is achieved in a single step by simpl...
متن کاملDevelopment of Self-Healing Coatings Based on Linseed Oil as Autonomous Repairing Agent for Corrosion Resistance
In recent years corrosion-resistant self-healing coatings have witnessed strong growth and their successful laboratory design and synthesis categorises them in the family of smart/multi-functional materials. Among various approaches for achieving self-healing, microcapsule embedment through the material matrix is the main one for self-healing ability in coatings. The present work focuses on opt...
متن کاملFurosemide-Loaded Microcapsules: The Influence of Lactose Content on Encapsulation Efficiency and Drug Release
In recent years there has been increasing attention given to the utility of selfmicroemulsifying systems (SMES) for improving the gastrointestinal absorption of drugs with inadequate biopharmaceutical properties. Microencapsulation of those systems into polymeric matrix is one of the solidification techniques that allow formulation of solid self-microemulsifing formulations. Microcapsules with ...
متن کاملInvestigation of the Self-Healing Behaviors of Microcapsules/Bitumen Composites by a Repetitive Direct Tension Test
The aim of this work was to evaluate the self-healing behaviors of bitumen using microcapsules containing rejuvenator by a modified fracture healing-refracture method through a repetitive tension test. Microcapsules had mean size values of 10, 20 and 30 μm with a same core/shell ratio of 1/1. Various microcapsules/bitumen samples were fabricated with microcapsule contents of 1.0, 3.0 and 5.0 wt...
متن کامل