Biogel Library-Accelerated Discovery of All-Natural Bioelectronics.

IF 8.2 1区 化学 Q1 CHEMISTRY, ANALYTICAL ACS Sensors Pub Date : 2024-11-27 DOI:10.1021/acssensors.4c02297
Qiankun Zeng, Ning Tang, Guoyue Shi, Min Zhang
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引用次数: 0

Abstract

Biogels prepared from natural biopolymers are ideal candidates for constructing bioelectronics from the perspective of commercialization and environmental sustainability. However, discovering all-natural biogels that meet specific properties, such as mechanical properties, optical transparency, and stability, remains challenging. Here, our study introduces a revolutionary biogel library, a novel resource that significantly accelerates the discovery and application of suitable all-natural biogel materials for bioelectronics. Utilizing a high-throughput screening system designed with a frontend/backend development strategy, this biogel library facilitates the swift screening and customization of biogels, tailored to meet specific performance criteria. Along with demonstrating applications in soft bioelectronics and printed bioelectronics, this research also thoroughly investigates the recyclability and environmental impacts of biogels, setting a foundation for their use in sustainable, closed-loop ecological systems. This pioneering approach serves not only to foster the departure from petrochemical-derived polymers but also to bolster the advancement of environmentally responsible bioelectronics.

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生物凝胶库--加速全天然生物电子学的发现。
从商业化和环境可持续性的角度来看,由天然生物聚合物制备的生物凝胶是构建生物电子学的理想候选材料。然而,发现符合特定性能(如机械性能、光学透明度和稳定性)的全天然生物凝胶仍具有挑战性。在这里,我们的研究引入了一个革命性的生物凝胶库,这是一种新型资源,可大大加快发现和应用适合生物电子学的全天然生物凝胶材料。利用前端/后端开发策略设计的高通量筛选系统,该生物凝胶库有助于快速筛选和定制生物凝胶,以满足特定的性能标准。除了展示在软生物电子学和印刷生物电子学中的应用,这项研究还深入调查了生物凝胶的可回收性和对环境的影响,为其在可持续的闭环生态系统中的应用奠定了基础。这种开创性的方法不仅有助于摒弃石化聚合物,还能促进对环境负责的生物电子学的发展。
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来源期刊
ACS Sensors
ACS Sensors Chemical Engineering-Bioengineering
CiteScore
14.50
自引率
3.40%
发文量
372
期刊介绍: ACS Sensors is a peer-reviewed research journal that focuses on the dissemination of new and original knowledge in the field of sensor science, particularly those that selectively sense chemical or biological species or processes. The journal covers a broad range of topics, including but not limited to biosensors, chemical sensors, gas sensors, intracellular sensors, single molecule sensors, cell chips, and microfluidic devices. It aims to publish articles that address conceptual advances in sensing technology applicable to various types of analytes or application papers that report on the use of existing sensing concepts in new ways or for new analytes.
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