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Resorbable barrier polymers for flexible bioelectronics

delete2023-11-11
delete10
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OA
AI
S
Samantha M. McDonald
Q
Quansan Yang
Y
Yen‐Hao Hsu
S
Shantanu P. Nikam
Z
Ziying Hu
Z
Zilu Wang
D
Darya Asheghali
T
Tiffany Yen
A
Andrey V. Dobrynin
J
John A. Rogers *
M
Matthew L. Becker *
DOI:10.1038/s41467-023-42775-5delete
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摘要

摘要

En 中文
Resorbable, implantable bioelectronic devices are emerging as powerful tools to reliably monitor critical physiological parameters in real time over extended periods. While degradable magnesium-based electronics have pioneered this effort, relatively short functional lifetimes have slowed clinical translation. Barrier films that are both flexible and resorbable over predictable timelines would enable tunability in device lifetime and expand the viability of these devices. Herein, we present a library of stereocontrolled succinate-based copolyesters which leverage copolymer composition and processing method to afford tunability over thermomechanical, crystalline, and barrier properties. One copolymer composition within this library has extended the functional lifetime of transient bioelectronic prototypes over existing systems by several weeks-representing a considerable step towards translational devices. Resorbable bioelectronic devices have potential as tools for monitoring physiological parameters, but short functional lifetimes have slowed translation. Here, the authors report succinate-based copolyesters with barrier properties able to extend the functional lifetime of devices.
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Nature Communications
IF:
15.7
论文数:
9.4W
被引数:
91.2W

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D
Duke University
学者数:
6.3W
论文数: 5.7W
被引数: 6.5W
U
University of North Carolina School of Medicine
学者数:
1.6W
论文数: 1.1W
被引数: 20
N
Northwestern University
学者数:
6.2W
论文数: 5.3W
被引数: 3.9K
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