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September 10, 2025Aggregate18 citationsOpen Access

Functional Starch‐Based Conductive Hydrogel for Flexible Electronics: Design, Construction, and Applications

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XDXugang DangSHSongyu HanJTJiajia Tang

Key Points

  • Starch-based conductive hydrogels exhibit high biocompatibility, enabling safe integration into biological systems.
  • The synthesis of these hydrogels involves complex techniques that currently limit their practical use in bioelectronics.
  • The review emphasizes the need for greener production methods and cost reduction to enhance the scalability of conductive hydrogels.
  • Applications span from wearable sensors to flexible batteries, demonstrating the versatility of starch-based conductive materials.

Abstract

ABSTRACT Conductive hydrogels show great promise in the field of flexible bioelectronics, but their complex synthesis process and insufficient safety limit practical applications. Starch, as a natural polysaccharide, is an ideal candidate for bio‐based conductive materials due to its processability, biocompatibility, and degradability. This review summarizes the research progress of starch‐based conductive materials, elucidates their synthesis mechanisms, and elaborates on the methods for imparting conductivity to starch and their application advancements in the conductive materials. Especially, the review emphasizes the high compatibility between starch‐based materials and biological tissues and focuses on different design methods of starch‐based conductive hydrogels, highlighting their respective advantages and disadvantages. Then, the properties and applications of starch‐based conductive hydrogels in wearable sensors, supercapacitors, batteries, and other biomedical‐related devices were summarized emphatically. Meanwhile, this review also objectively examined the current challenges, focusing on the difficulties in enhancing the performance of starch‐based conductive hydrogels, reducing production costs, and scaling up manufacturing. Overall, these analyses were conducted to guide the further development of conductive hydrogels toward greener and more sustainable practices.

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Cite This Study

Dang et al. (2025) studied this question.

synapsesocial.com/papers/68c1a40f54b1d3bfb60dea00https://doi.org/10.1002/agt2.70121
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