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通过原位法在离子液体/明胶复合体系中生长的高度稳定的CsSnCl量子点。

Highly Stable CsSnCl Quantum Dots Grown in an Ionic Liquid/Gelatin Composite System through an In Situ Method.

作者信息

Lyu Bin, Bao Xin, Gao Dangge, Guo Xu, Lu Xiangrui, Ma Jianzhong

机构信息

College of Bioresources Chemical and Materials Engineering, Shaanxi University of Science & Technology, Xi'an 710021, China.

National Demonstration Center for Experimental Light Chemistry Engineering Education Shaanxi University of Science & Technology, Xi'an 710021, China.

出版信息

Inorg Chem. 2022 Apr 11;61(14):5672-5682. doi: 10.1021/acs.inorgchem.2c00716. Epub 2022 Mar 25.

Abstract

Lead halide perovskite quantum dots (QDs) are controversial due to their high lead content. Tin, a low-toxic element with an outer electronic structure similar to that of Pb, becomes a strong candidate for preparing lead-free perovskite QDs. However, tin-based perovskite QDs, especially CsSnCl QDs, exhibit poor environmental stability. Herein, we proposed an strategy for highly stable CsSnCl QDs using an ionic liquid as a solvent and antioxidant and gelatin as a multidentate ligand and coating material through an in situ method ([AMIM]Cl/gelatin-QDs). The results showed that the abundant active groups of gelatin served as the nucleation growth center for QDs and further passivated QDs. At the same time, the long molecular chain of gelatin can coat the QDs to isolate the environment and fully protect QDs, and the size of QDs grown in gelatin was 5-10 nm. In addition, the oxidation resistance of ionic liquids and the halogen-rich environment formed also played an important role. Even if [AMIM]Cl/gelatin-QDs were treated with water and ultraviolet light simultaneously, its remaining fluorescence intensity was still above 60% within 72 h. Meaningfully, QDs endowed the composite system mildew resistance, which can resist the erosion of gelatin by molds, thereby realizing the system's long-term protection toward CsSnCl QDs.

摘要

卤化铅钙钛矿量子点(QDs)因其高铅含量而备受争议。锡是一种低毒元素,其外层电子结构与铅相似,成为制备无铅钙钛矿量子点的有力候选者。然而,锡基钙钛矿量子点,尤其是CsSnCl量子点,表现出较差的环境稳定性。在此,我们提出了一种策略,通过原位方法([AMIM]Cl/明胶-QDs),使用离子液体作为溶剂和抗氧化剂,明胶作为多齿配体和包覆材料,来制备高度稳定的CsSnCl量子点。结果表明,明胶丰富的活性基团作为量子点的成核生长中心,并进一步钝化量子点。同时,明胶的长分子链可以包覆量子点以隔离环境并充分保护量子点,在明胶中生长的量子点尺寸为5-10纳米。此外,离子液体的抗氧化性以及形成的富卤环境也起到了重要作用。即使[AMIM]Cl/明胶-QDs同时受到水和紫外线处理,其剩余荧光强度在72小时内仍高于60%。有意义的是,量子点赋予复合体系防霉性能,能够抵抗霉菌对明胶的侵蚀,从而实现体系对CsSnCl量子点的长期保护。

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