Self-Healing Polymeric Materials in Electronics and Aerospace Technology: Underpinning Science and Technology

The demand for durable, reliable, and maintenance-free materials has driven significant advancements in self-healing polymers, particularly in the fields of electronics and avionics. The role of smart polymers, nanomaterials, microcapsule-based systems, ionic gels, and self-healing interconnects is highlighted in this paper’s exploration of current advancements in self-healing materials. These materials have the rare capacity to fix electrical and mechanical damage on their own, increasing gadget longevity, enhancing safety, and reducing maintenance expenses. Self-healing polymers in electronics allow for the creation of wearable, flexible, and elastic devices with improved dependability and performance. They provide resistance to harsh environmental factors like UV rays, temperature cycling, and micrometeoroid impacts in avionics and spacecraft applications. The paper also discusses practical implementations in structural components such as coatings, engines, fuselages, and aerostructures, supported by recent research and performance data. Finally, it outlines future directions, highlighting issues with scalability, AI-assisted diagnostics, extreme-environment resilience, and multifunctional integration. Because self-healing polymers allow for autonomous, adaptable, and intelligent material behavior, they have the potential to completely transform next-generation electronics and aerospace systems.

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Publication Details

Journal
Polymer-Plastics Technology and Materials
Published
2026-09-28
DOI
https://doi.org/10.1080/25740881.2026.2733345
Primary Topic
Polymer composites and self-healing
Type
article
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Self-Healing Polymeric Materials in Electronics and Aerospace Technology: Underpinning Science and Technology

Md. Enamul Hoque, Niaz Mohammad Zahin, Abdul Hasib Hasan Zayed, SK Naymul Siddque et al.
Polymer-Plastics Technology and Materials
Polymer composites and self-healing
article

Self-Healing Polymeric Materials in Electronics and Aerospace Technology: Underpinning Science and Technology

Md. Enamul Hoque, Niaz Mohammad Zahin, Abdul Hasib Hasan Zayed, SK Naymul Siddque, Mahatab Bin Rashid, Md Abul Kalam Azad
article en

Abstract

The demand for durable, reliable, and maintenance-free materials has driven significant advancements in self-healing polymers, particularly in the fields of electronics and avionics. The role of smart polymers, nanomaterials, microcapsule-based systems, ionic gels, and self-healing interconnects is highlighted in this paper’s exploration of current advancements in self-healing materials. These materials have the rare capacity to fix electrical and mechanical damage on their own, increasing gadget longevity, enhancing safety, and reducing maintenance expenses. Self-healing polymers in electronics allow for the creation of wearable, flexible, and elastic devices with improved dependability and performance. They provide resistance to harsh environmental factors like UV rays, temperature cycling, and micrometeoroid impacts in avionics and spacecraft applications. The paper also discusses practical implementations in structural components such as coatings, engines, fuselages, and aerostructures, supported by recent research and performance data. Finally, it outlines future directions, highlighting issues with scalability, AI-assisted diagnostics, extreme-environment resilience, and multifunctional integration. Because self-healing polymers allow for autonomous, adaptable, and intelligent material behavior, they have the potential to completely transform next-generation electronics and aerospace systems.

Polymer-Plastics Technology and Materials
Chittagong University of Engineering & Technology (BD), West Virginia University (US), Military Institute of Science and Technology (BD), University of Tabuk (SA)
Openalex Percentile: Top 24%
Polymer composites and self-healing
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Self-Healing Polymeric Materials in Electronics and Aerospace Technology: Underpinning Science and Technology — Md. Enamul Hoque, Niaz Mohammad Zahin, et al. · Polymer-Plastics Technology and Materials (2026) | TGRS Research Map | TGRS