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用于大规模传感应用的基于蛋白质的自立质子导电透明弹性体。

A Protein-Based Free-Standing Proton-Conducting Transparent Elastomer for Large-Scale Sensing Applications.

机构信息

Schulich Faculty of Chemistry, Technion - Israel Institute of Technology, Haifa, 3200003, Israel.

出版信息

Adv Mater. 2021 Aug;33(32):e2101208. doi: 10.1002/adma.202101208. Epub 2021 Jul 5.

Abstract

A most important endeavor in modern materials' research is the current shift toward green environmental and sustainable materials. Natural resources are one of the attractive building blocks for making environmentally friendly materials. In most cases, however, the performance of nature-derived materials is inferior to the performance of carefully designed synthetic materials. This is especially true for conductive polymers, which is the topic here. Inspired by the natural role of proteins in mediating protons, their utilization in the creation of a free-standing transparent polymer with a highly elastic nature and proton conductivity comparable to that of synthetic polymers, is demonstrated. Importantly, the polymerization process relies on natural protein crosslinkers and is spontaneous and energy-efficient. The protein used, bovine serum albumin, is one of the most affordable proteins, resulting in the ability to create large-scale materials at a low cost. Due to the inherent biodegradability and biocompatibility of the elastomer, it is promising for biomedical applications. Here, its immediate utilization as a solid-state interface for sensing of electrophysiological signals, is shown.

摘要

现代材料研究中最重要的努力方向是当前向绿色环保和可持续材料的转变。自然资源是制造环保材料的有吸引力的基石之一。然而,在大多数情况下,天然衍生材料的性能不如经过精心设计的合成材料的性能。这在导电聚合物中尤其如此,这也是本文的主题。受蛋白质在介导质子方面的自然作用的启发,展示了利用它们来创建具有高弹性和质子导电性的独立透明聚合物,其性能可与合成聚合物相媲美。重要的是,聚合过程依赖于天然蛋白质交联剂,并且是自发和节能的。所使用的蛋白质,牛血清白蛋白,是最实惠的蛋白质之一,这使得能够以低成本制造大规模的材料。由于弹性体固有的可生物降解性和生物相容性,它有望用于生物医学应用。在这里,展示了其作为电生理信号传感的固态界面的直接应用。

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