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September 5, 2025RSC Advances18 citationsOpen Access

Emergence of shape memory polymers as a new material for diverse applications

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SCSravan Kumar ChandakaADApurba K. DasPLPartha Laskar

Key Points

  • Shape memory polymers can revert to original shapes under stimuli, highlighting their adaptability.
  • These materials show promise in applications like drug delivery, tissue engineering, and 4D printing.
  • Ongoing research aims to enhance the biocompatibility and biodegradability of shape memory polymers.
  • The current focus is on addressing challenges in synthesizing functional shape memory polymers for diverse uses.

Abstract

The hyper-intelligent features of the shape memory polymers (SMPs) effectively attract the attention of researchers worldwide to translate their potential into a wide range of applications. SMPs possess a unique capability to transform original or predefined shapes to a deformed temporary shape and vice versa under the influence of stimuli for instance, water, temperature, light, pH, magnetic field, enzyme, etc. The emergence of SMPs has created a prominent impact in the progress of tissue engineering, drug delivery, designing biomedical devices, electrical/optical sensing, 4D printing, designing deployable devices for spacecraft, wastewater treatment, smart fibres for textiles, etc. However, to translate such smart materials for biomedical and material science applications, there is a continuous hunt of novel polymer functional materials and methodologies to make biocompatible, biodegradable, and adaptable (in chemical and physical properties such as, shape fixity, shape recovery, self-healing, and cross-linking ability etc.) SMPs. The review presents a timely overview of synthesis and diverse applications of functional SMPs in biomedical and material science emphasizing on latest developments and future challenges.

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Cite This Study

Chandaka et al. (2025) studied this question.

synapsesocial.com/papers/68bb49d26d6d5674bccffee8https://doi.org/10.1039/d5ra04372g
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