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A facile cation exchange-based aqueous synthesis of highly stable and biocompatible Ag_2S quantum dots emitting in the second near-infrared biological window

机译:在第二近红外生物窗口中发射的高度稳定且生物相容的Ag_2S量子点的基于阳离子交换的水基合成

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摘要

Second near-infrared (NIR-II) emitting Ag_2S quantum dots (QDs) with high stability and biocompatibility were synthesized and developed toward an ideal nanoprobe. This study reports a facile synthesis of NIR-II Ag_2S QDs on the basis of cation exchange between visible-emitting CdS QDs and Ag~+ ions in aqueous solution. Experimental data testified that the cation exchange was quick and complete and that the resultant products were single monoclinic Ag_2S without CdS QDs. The prepared Ag_2S QDs were systematically characterized, showed typical NIR-II emission and high PL stability, and had small diameters (~3.5 nm) and a quantum yield up to 2.3%. The results of cytotoxicity assay suggested that the Ag_2S QDs produced negligible effects in altering the cell proliferation or in generating reactive oxygen species, indicating an ultralow cytotoxicity and an excellent biocompatibility. These properties have opened up the possibility of using Ag_2S QDs for effective bioimaging applications.
机译:合成了具有高稳定性和生物相容性的第二种近红外(NIR-II)发射Ag_2S量子点(QD),并向着理想的纳米探针发展。这项研究报告了在可见发射CdS QD和水溶液中Ag〜+离子之间阳离子交换的基础上,NIR-II Ag_2S QD的简便合成。实验数据证明阳离子交换是快速而完整的,所得产物为单一单斜Ag_2S,无CdS QD。对制备的Ag_2S量子点进行了系统表征,显示出典型的NIR-II发射和高PL稳定性,并且具有小直径(〜3.5 nm)和量子产率高达2.3%。细胞毒性测定的结果表明,Ag_2S量子点在改变细胞增殖或产生活性氧方面产生的作用可忽略不计,表明细胞毒性极低,且生物相容性极佳。这些特性为将Ag_2S QD用于有效的生物成像应用打开了可能性。

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