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具有关键控制表面态的绿色荧光碳点:通过喂养蚕使丝发光。

Green Fluorescent Carbon Dots with Critically Controlled Surface States: Make Silk Shine via Feeding Silkworms.

机构信息

Department of Chemistry and Shanghai Key Laboratory of Molecular and Catalysis and Innovative Materials, Fudan University, Shanghai 200438, P. R. China.

出版信息

Nano Lett. 2024 Aug 7;24(31):9675-9682. doi: 10.1021/acs.nanolett.4c02426. Epub 2024 Jul 26.

Abstract

Feeding silkworms with functional materials as additives to produce naturally modified silk is a facile, diverse, controllable, and environmentally friendly method with a low cost of time and investment. Among various additives, carbon dots (CDs) show unique advantages due to their excellent biocompatibility and fluorescence stability. Here, a new type of green fluorescent carbon dots (G-CDs) is synthesized with a high oil-water partition ratio of 147, a low isoelectric point of 5.16, an absolute quantum yield of 71%, and critically controlled surface states. After feeding with G-CDs, the silkworms weave light yellow cocoons whose green fluorescence is visible to the naked eye under UV light. The luminous silk is sewn onto the cloth to create striking patterns with beautiful fluorescence. Such G-CDs have no adverse effect on the survival rate and the life cycle of silkworms and enable their whole bodies to glow under UV light. Based on the strong fluorescence, chemical stability, and biological safety, G-CDs are found in the digestive tracts, silk glands, feces, cocoons, and even moth bodies. G-CDs accumulate in the posterior silk glands where fibroin protein is secreted, indicating its stronger combination with fibroin than sericin, which meets the requirements for practical applications.

摘要

用功能性材料作为添加剂喂养蚕来生产天然改性丝是一种简便、多样、可控且环保的方法,具有时间和投资成本低的特点。在各种添加剂中,由于其出色的生物相容性和荧光稳定性,碳点 (CDs) 显示出独特的优势。在这里,我们合成了一种新型的绿色荧光碳点 (G-CDs),其油水分配比为 147,等电点为 5.16,绝对量子产率为 71%,并且表面状态可得到严格控制。用 G-CDs 喂养后,蚕会吐出浅黄色的茧,在紫外光下肉眼可见绿色荧光。将发光的丝绸缝在布上,可以创造出带有美丽荧光的醒目图案。这种 G-CDs 对蚕的存活率和生命周期没有不良影响,并且可以使它们的全身在紫外光下发光。基于其强荧光、化学稳定性和生物安全性,在蚕的消化道、丝腺、粪便、茧甚至蛾体中都发现了 G-CDs。G-CDs 积聚在分泌丝素蛋白的后部丝腺中,这表明它与丝胶的结合比丝素更强,符合实际应用的要求。

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