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April 30, 2026Bio-Design and Manufacturing0 citations

Metabolite Self-Assemblies for Implantable Piezoelectric Bioelectronics

Minimalistic metabolite piezoelectric self-assembly for the development of implantable bioelectronics for in vivo monitoring

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Authors

ZQZengfeng QiuRLRuiqi LiuHJHaoye Jiang

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Overview

Randomized trial explores piezoelectric bioelectronics for in vivo monitoring, suggesting a new approach in biomedical engineering.

Key Points

  • The aim is to investigate the use of minimalistic metabolite self-assemblies in developing implantable piezoelectric bioelectronics for in vivo monitoring.
  • Experimental tests on threonine crystals to assess Young’s modulus and other electromechanical behaviors.
  • Computational analysis of crystal packing influenced by side-chain entities and polar moieties.
  • Threonine crystals exhibit a Young’s modulus of up to approximately 80 GPa due to a dense hydrogen-bonding network.
  • Side-chain entities affect piezoelectric features, improving tactile sensing and motion monitoring capabilities.

Cite This Study

Qiu et al. (2026) studied this question.

synapsesocial.com/papers/69f2f0e31e5f7920c6386f0fhttps://doi.org/10.1631/bdm.2600041
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