生物衍生电子学:利用蛋白质制造具有优越电子和光电子特性的大型组件

N. Amdursky
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引用次数: 0

摘要

大自然利用蛋白质发挥多种功能,其中最重要的是它们形成高层次结构以及调节电荷的能力。我们的灵感来自于自然界中蛋白质的这些功能,并利用蛋白质来形成大规模的导电材料。我们在这里报道了一个新的导电生物聚合物家族,只使用可持续的和丰富的蛋白质。我们表明,我们的新生物聚合物具有优异的机械性能和离子电导率,这是由于它们的高吸水性和氧氨基酸的存在。我们进一步表明,我们的生物聚合物可以很容易地以不同的方式功能化,从而增强它们的离子电导率,实现电子传导,并引入光电特性。我们目前用我们的聚合物制造新的生物传感器。这些聚合物是环保的、可生物降解的、生物相容性的、低成本的,我们预见它们将在从生物医学到能源应用的众多应用中得到整合
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Bioderived electronics: utilizing proteins for making large scale assemblies exhibiting superior electronic and optoelectronic properties
Nature uses proteins for a variety of functions, and among all others, their ability to form high-hierarchical structures as well as to mediate charges. We are inspired by these functions of proteins in nature and utilize proteins for the formation of large-scale conductive materials. We report here on a new family of conductive biopolymers using only sustainable and abundant proteins. We show that our new biopolymers have superior mechanical properties and ionic conductivity, which is due to their high water uptake and the presence of oxo-amino-acids. We further show that our biopolymers can be easily functionalized in different ways, thus enhancing their ionic conductivity, enabling electron conduction, and introducing optoelectronic properties. We currently use our polymers for making new biosensors. These polymers are environmentally friendly, biodegradable, biocompatible, and low-cost, and we foresee their integration in numerous applications from biomedical to energy applications
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