4D Printing of TBCHA-Based Shape Memory Polymer Composites: Bioglass 45S5 Addition Improves Stability Retention and Shape Memory Performance

Meng-Ruei Liu, Hsuan Chen, Nien-Ti Tsou, Shyh-Yuan Lee, Yuan-Min Lin · American Chemical Society (ACS) · 2026

4D-printed TBCHA-based shape-memory polymer composites with Bioglass 45S5 show improved stability retention and shape-memory performance.

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Plain English summary

The record title indicates a study on 4D printing TBCHA-based shape-memory polymer composites. It reports that adding Bioglass 45S5 improves stability retention and shape-memory performance. No abstract text is provided here, so details such as methods, metrics, and results cannot be verified from the supplied information.

Why this matters

The title claims novelty in using Bioglass 45S5 as an additive to improve stability retention and shape-memory performance in TBCHA-based 4D-printed shape-memory polymer composites. No information is provided about device-level validation, scalability, durability over time, manufacturing readiness, or commercialization.

Key findings

  • TBCHA-based shape-memory polymer composites were used in a 4D printing context (per title).
  • Bioglass 45S5 addition improves stability retention (per title).
  • Bioglass 45S5 addition improves shape memory performance (per title).

Limitations

The abstract is empty, so the supplied information does not include experimental details, quantitative results, comparisons to prior work, or explicit application targets.

Publication

Publisher
American Chemical Society (ACS)
Publication date
April 29, 2026
Research type
Paper
License
https://creativecommons.org/licenses/by/4.0/

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Method note: Summaries and ratings on this page are generated by AI from the abstract only. Read the original paper for full context. · Model: gpt-5.4-nano-2026-03-17