Mostert A Bernardus
Department of Chemistry, Swansea University, Singleton Park, Wales SA2 8PP, UK.
Polymers (Basel). 2021 May 20;13(10):1670. doi: 10.3390/polym13101670.
Today, western society is facing challenges to create new medical technologies to service an aging population as well as the ever-increasing e-waste of electronic devices and sensors. A key solution to these challenges will be the use of biomaterials and biomimetic systems. One material that has been receiving serious attention for its biomedical and device applications is eumelanin. Eumelanin, or commonly known as melanin, is nature's brown-black pigment and is a poly-indolequinone biopolymer, which possess unique physical and chemical properties for material applications. Presented here is a review, aimed at polymer and other materials scientists, to introduce eumelanin as a potential material for research. Covered here are the chemical and physical structures of melanin, an overview of its unique physical and chemical properties, as well as a wide array of applications, but with an emphasis on device and sensing applications. The review is then finished by introducing interested readers to novel synthetic protocols and post synthesis fabrication techniques to enable a starting point for polymer research in this intriguing and complex material.
如今,西方社会在创造新的医疗技术以服务老龄化人口以及应对电子设备和传感器日益增加的电子垃圾方面面临挑战。应对这些挑战的一个关键解决方案将是使用生物材料和仿生系统。因其生物医学和设备应用而受到广泛关注的一种材料是真黑素。真黑素,通常被称为黑色素,是自然界中的棕黑色色素,是一种聚吲哚醌生物聚合物,具有用于材料应用的独特物理和化学性质。本文是一篇面向聚合物和其他材料科学家的综述,旨在介绍真黑素作为一种潜在的研究材料。这里涵盖了黑色素的化学和物理结构、其独特物理和化学性质的概述,以及广泛的应用,但重点是设备和传感应用。最后,本文向感兴趣的读者介绍了新颖的合成方案和合成后制备技术,为对这种有趣而复杂的材料进行聚合物研究提供一个起点。