丝绸
丝素
家蚕
荧光
材料科学
纳米技术
纳米点
化学
复合材料
光学
生物化学
物理
基因
作者
Suna Fan,Xiaoting Zheng,Qi Zhan,Huihui Zhang,Huili Shao,Jie‐Xin Wang,Chengbo Cao,Meifang Zhu,Dan Wang,Yaopeng Zhang
标识
DOI:10.1007/s40820-019-0303-z
摘要
Abstract Fluorescent silk is fundamentally important for the development of future tissue engineering scaffolds. Despite great progress in the preparation of a variety of colored silks, fluorescent silk with enhanced mechanical properties has yet to be explored. In this study, we report on the fabrication of intrinsically super-strong fluorescent silk by feeding Bombyx mori silkworm carbon nanodots (CNDs). The CNDs were incorporated into silk fibroin, hindering the conformation transformation, confining crystallization, and inducing orientation of mesophase. The resultant silk exhibited super-strong mechanical properties with breaking strength of 521.9 ± 82.7 MPa and breaking elongation of 19.2 ± 4.3%, improvements of 55.1% and 53.6%, respectively, in comparison with regular silk. The CNDs-reinforced silk displayed intrinsic blue fluorescence when exposed to 405 nm laser and exhibited no cytotoxic effect on cells, suggesting that multi-functional silks would be potentially useful in bioimaging and other applications.
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