黑色素
材料科学
三肽
超分子化学
肽
拉曼光谱
形态学(生物学)
纤维
酪氨酸
质子
自愈水凝胶
纳米技术
化学工程
生物物理学
有机化学
高分子化学
化学
生物化学
分子
生物
复合材料
物理
光学
遗传学
工程类
量子力学
作者
Samala Murali Mohan Reddy,Eileen Raßlenberg,Sian Sloan‐Dennison,Travis Hesketh,Ohad Silberbush,Tell Tuttle,Ewen Smith,Duncan Graham,Karen Faulds,Rein V. Ulijn,Nurit Ashkenasy,Ayala Lampel
标识
DOI:10.1002/adma.202003511
摘要
Abstract Melanin pigments have various properties that are of technological interest including photo‐ and radiation protection, rich coloration, and electronic functions. Nevertheless, laboratory‐based synthesis of melanin and melanin‐like materials with morphologies and chemical structures that are specifically optimized for these applications, is currently not possible. Here, melanin‐like materials that are produced by enzymatic oxidation of a supramolecular tripeptide structures that are rich in tyrosine and have a 1D morphology are demonstrated, that are retained during the oxidation process while conducting tracks form through oxidative tyrosine crosslinking. Specifically, a minimalistic self‐assembling peptide, Lys–Tyr–Tyr (KYY) with strong propensity to form supramolecular fibers, is utilized. Analysis by Raman spectroscopy shows that the tyrosines are pre‐organized inside these fibers and, upon enzymatic oxidation, result in connected catechols. These form 1D conducting tracks along the length of the fiber, which gives rise to a level of internal disorder, but retention of the fiber morphology. This results in highly conductive structures demonstrated to be dominated by proton conduction. This work demonstrates the ability to control oxidation but retain a well‐defined fibrous morphology that does not have a known equivalent in biology, and demonstrate exceptional conductivity that is enhanced by enzymatic oxidation.
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