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From Binary Cu2S to Ternary Cu-In-S and Quaternary Cu-In-Zn-S Nanocrystals with Tunable Composition via Partial Cation Exchange

机译:从二元Cu2S到部分阳离子交换可调谐组成的三元Cu-In-S和四元Cu-In-Zn-S纳米晶体

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摘要

We present an approach for the synthesis of ternary copper indium sulfide (CIS) and quaternary copper indium zinc sulfide (CIZS) nanocrystals (NCs) by means of partial cation exchange with In3+ and Zn2+. The approach consists of a sequential three-step synthesis: first, binary Cu2S NCs were synthesized, followed by the homogeneous incorporation of In3+ by an in situ partial cation-exchange reaction, leading to CIS NCs. In the last step, a second partial exchange was performed where Zn2+ partially replaced the Cu+ and In3+ cations at the surface, creating a ZnS-rich shell with the preservation of the size and shape. By careful tuning reaction parameters (growth and exchange times as well as the initial Cu+:In3+:Zn2+ ratios), control over both the size and composition was achieved. This led to a broad tuning of photoluminescence of the final CIZS NCs, ranging from 880 to 1030 nm without altering the NCs size. Cytotoxicity tests confirmed the biocompatibility of the synthesized CIZS NCs, which opens up opportunities for their application as near-infrared fluorescent markers in the biomedical field.
机译:我们提出了一种通过与In3 +和Zn2 +进行部分阳离子交换的方法来合成三元铜铟硫(CIS)和四元铜铟锌硫化物(CIZS)纳米晶体(NCs)的方法。该方法由顺序的三步合成组成:首先合成二元Cu2S NCs,然后通过原位部分阳离子交换反应将In3 +均匀掺入,从而形成CIS NCs。在最后一步中,进行了第二次部分交换,其中Zn2 +部分取代了表面的Cu +和In3 +阳离子,从而形成了富含ZnS的壳,并保留了大小和形状。通过仔细调整反应参数(生长和交换时间以及初始的Cu +:In3 +:Zn2 +比例),可以控制大小和组成。这导致了最终CIZS NC的光致发光的广泛调整,范围从880 nm到1030 nm,而没有改变NC的尺寸。细胞毒性测试证实了合成的CIZS NCs的生物相容性,这为其在生物医学领域中用作近红外荧光标记物提供了机会。

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