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Is the kernel–staples match a key–lock match?

机译:内核订书钉匹配键锁匹配吗?

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摘要

Metal nanoclusters provide excellent references for understanding metal nanoparticle surfaces, which remain mysterious due to the difficulty of atomically precise characterization. Although some remarkable advances have been achieved for understanding the structure of metal nanoclusters, it is still unknown if the inner kernel–outer staples match is a key–lock match and how the surface staples influence some of the properties of metal nanoclusters. Herein, we have developed an acid-induction method for synthesizing a novel gold nanocluster whose composition is determined to be Au42(TBBT)26 (TBBT: 4-tert-butylbenzenelthiolate) by ESI-MS and single-crystal X-ray crystallography (SCXC). SCXC also reveals that Au42(TBBT)26 has an identical kernel but different staples with an existing gold nanocluster Au44(TBBT)28, indicating that the kernel–staples match is not a key–lock match and the existence of homo-ligand–homo-kernel–hetero-staples phenomenon in metal nanoclusters provides some reference for understanding the growth or transformation of metal nanoclusters. Further experiments reveal that the staples greatly contribute to the stability of gold nanoclusters and influence their photoluminescence intensity and that minute differences in the interfacial structure can lead to enhanced stability and photoluminescence.
机译:金属纳米团簇为理解金属纳米颗粒表面提供了极好的参考,由于原子精确表征的困难,金属纳米颗粒表面仍然神秘。尽管在理解金属纳米团簇的结构方面已经取得了一些显着的进步,但仍未知内在的内核-外层吻合钉是否是钥匙-锁扣匹配以及表面的吻合钉如何影响金属纳米团簇的某些性能。本文中,我们已经开发了一种酸诱导方法,用于通过ESI-MS和单晶X射线晶体学(SCXC)合成新型金纳米团簇,该金纳米团簇的成分确定为Au42(TBBT)26(TBBT:4-叔丁基苯硫醇酯) )。 SCXC还显示,Au42(TBBT)26具有相同的内核,但主食与现有的金纳米簇Au44(TBBT)28不同,这表明内核-主食匹配不是键锁匹配,并且不存在同源配体-均质金属纳米团簇的核-杂合钉现象为理解金属纳米团簇的生长或转变提供了一些参考。进一步的实验表明,订书钉极大地有助于金纳米团簇的稳定性并影响其光致发光强度,界面结构的细微差异可导致稳定性和光致发光性增强。

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