Research Progress of Human Biomimetic Self-Healing Materials.

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School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, P. R. China.

Published: October 2024

AI Article Synopsis

  • Researchers are developing bionic self-healing materials that mimic the healing abilities and mechanical properties of human organs, like muscles and skin.
  • These materials address the limitations of traditional self-healing substances by replicating the structures found in biological systems, improving their strength and resilience.
  • The review highlights advancements in these materials, their potential applications in areas like biomedical detection and coatings, and the promise of creating eco-friendly products through ongoing research.

Article Abstract

Humans can heal themselves after injury, which inspires researchers to develop bionic self-healing materials. Such materials not only equipped with the self-repair capacities akin to those of the human body, but also emulate the mechanical properties of human organs, including the tensile resilience of muscles, the fatigue resistance of skin, and the elevated modulus typical of cartilage. Based on the design concept of imitating the structure of human organs, the bionic self-healing material perfectly solves the problem of poor mechanical properties of self-healing materials caused by weak bond energy and inter-chain flow. This review discusses various organ-inspired self-healing materials in detail, summarizes their synthetic principles and introduces their fascinating mechanical properties. Finally, the application prospects of bionic self-healing polymer materials, such as bio-strain sensors, self-healing anticorrosive coatings, biomedical detection, etc., are outlined. Considering the excellent comprehensive performance and multi-functions of human biomimetic self-healing polymers, more outstanding sustainable materials will be developed, accelerating research progress in self-healing materials and realizing environmentally friendly products in multiple fields.

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Source
http://dx.doi.org/10.1002/smll.202408199DOI Listing

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