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通过热解胶原废料直接制备固体碳点及其在荧光传感与成像中的应用。

Direct preparation of solid carbon dots by pyrolysis of collagen waste and their applications in fluorescent sensing and imaging.

作者信息

Qin Xiaoyun, Fu Cuicui, Zhang Jin, Shao Wenlong, Qin Xiaomei, Gui Yanghai, Wang Lan, Guo Huishi, Chen Fenghua, Jiang Liying, Wu Gang, Bikker Floris J, Luo Dan

机构信息

School of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou, China.

CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, China.

出版信息

Front Chem. 2022 Sep 12;10:1006389. doi: 10.3389/fchem.2022.1006389. eCollection 2022.

Abstract

The fluorescent carbon dots (CDs) have found their extensive applications in sensing, bioimaging, and photoelectronic devices. In general terms, the synthesis of CDs is straight-forward, though their subsequent purification can be laborious. Therefore, there is a need for easier ways to generate solid CDs with a high conversion yield. Herein, we used collagen waste as a carbon source in producing solid CDs through a calcination procedure without additional chemical decomposition treatment of the raw material. Considering a mass of acid has destroyed the original protein macromolecules into the assembled structure with amino acids and peptide chains in the commercial extraction procedure of collagen product. The residual tissues were assembled with weak intermolecular interactions, which would easily undergo dehydration, polymerization, and carbonization during the heat treatment to produce solid CDs directly. The calcination parameters were surveyed to give the highest conversion yield at 78%, which occurred at 300°C for 2 h. N and S atomic doping CDs (N-CDs and S-CDs) were synthesized at a similar process except for immersion of the collagen waste in sulfuric acid or nitric acid in advance. Further experiments suggested the prepared CDs can serve as an excellent sensor platform for Fe in an acid medium with high anti-interference. The cytotoxicity assays confirmed the biosafety and biocompatibility of the CDs, suggesting potential applications in bioimaging. This work provides a new avenue for preparing solid CDs with high conversion yield.

摘要

荧光碳点(CDs)已在传感、生物成像和光电器件等领域得到广泛应用。一般来说,碳点的合成方法简单,但后续的纯化过程可能较为繁琐。因此,需要更简便的方法来制备高转化率的固态碳点。在此,我们以胶原蛋白废料为碳源,通过煅烧过程制备固态碳点,无需对原料进行额外的化学分解处理。考虑到在胶原蛋白产品的商业提取过程中,大量的酸已将原始蛋白质大分子分解为氨基酸和肽链组成的组装结构。残留组织通过弱分子间相互作用组装在一起,在热处理过程中容易发生脱水、聚合和碳化,直接生成固态碳点。通过对煅烧参数进行研究,发现在300℃下煅烧2小时时转化率最高,可达78%。除了预先将胶原蛋白废料浸泡在硫酸或硝酸中之外,通过类似的过程合成了氮和硫原子掺杂的碳点(N-CDs和S-CDs)。进一步的实验表明,所制备的碳点在酸性介质中对铁具有优异的传感性能,抗干扰能力强。细胞毒性试验证实了碳点的生物安全性和生物相容性,表明其在生物成像方面具有潜在应用。这项工作为制备高转化率的固态碳点提供了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4a1/9510749/d1a6ed7a5812/FCHEM_fchem-2022-1006389_wc_sch1.jpg

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