首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Thiol-Induced Synthesis of Phosphine-Protected Gold Nanoclusters with Atomic Precision and Controlling the Structure by Ligand/Metal Engineering
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Thiol-Induced Synthesis of Phosphine-Protected Gold Nanoclusters with Atomic Precision and Controlling the Structure by Ligand/Metal Engineering

机译:硫醇诱导用原子精度和配体/金属工程控制结构的合成膦保护的金纳米蛋白。

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摘要

Efficient synthesis of atomically precise phosphine-capped gold nanocluster (with >10 metal atoms) is important to deeply understand the relationship between structure and properties. Herein, we successfully utilize the thiol-induced synthesis method and obtain three atomically precise phosphine-protected gold nano clusters. Single-crystal X-ray structural analysis reveals that the nanoclusters are formulated as [Au-13(Dppm)(6)](BPh4)(3), [Au-18(Dppm)(6)Br-4](BPh4)(2), and [Au-20(Dppm)(6)(CN)(6)] (where Dppm stands for bis(diphenylphosphino)methane), which are further confirmed by electrospray ionization mass spectrometry, thermogravimetric analysis, and X-ray photoelectron spectroscopy. Meanwhile, [Au-18(Dppm)(6)Br-4] (BPh4)(2) could be converted into [Au-13(Dppm)(6)](BPh4)(3) and [Au-20(Dppm)(6)(CN)(6)] by engineering the surface ligands under excess PPh3 or moderate NaBH3CN, respectively. Furthermore, according to the different binding ability of silver with halogen, we successfully achieved target metal exchange on [Au-18(Dppm)(6)Br-4] (BPh4)(2) with Ag-SAdm (where HS-Adm stands for 1-adamantane mercaptan) complex and obtained [AgxAu18-x(Dppm)(6)Br-4](BPh4)(2) (x = 1, 2) alloy nanoclusters. Our work will contribute to more intensive understanding on synthesizing phosphine-protected nanoclusters as well as shedding light on the structure-property correlations in the nanocluster range.
机译:高效合成原子上精确的膦封端的金纳米蛋白(用> 10金属原子)对于深刻了解结构和性质之间的关系是重要的。在此,我们成功地利用了硫醇诱导的合成方法,得到了三种原子学上膦保护的金纳米簇。单晶X射线结构分析表明,纳米能器配制为[AU-13(DPPM)(6)](BPH4)(3),[AU-18(DPPM)(6)BR-4](BPH4) (2)和[AU-20(DPPM)(6)(6)(CN)(6)](其中DPPM代表双(二苯基膦基)甲烷),通过电喷雾电离质谱,热重分析和X-进一步证实。光线光电子体光谱。同时,可以将[Au-18(DPPM)(6)(6)BR-4](BPH4)(2)转化为[AU-13(DPPM)(6)](BPH4)(3)和[AU-20(DPPM )(6)(CN)(6)]通过工程在过量PPH3或中等NaBH3CN下的表面配体。此外,根据银与卤素的银与卤素的不同结合能力,我们在Ag-Sadm(其中Hs-Adm Stands的情况下,我们成功地实现了[Au-18(DPPM)(6)(6)BR-4](BPH4)(2)的靶金属交换(其中对于1- amantane硫醇)复合物,得到[Agxau18-x(DPPM)(6)BR-4](BPH4)(2)(X = 1,2)合金纳米团簇。我们的工作将有助于更加密集地了解合成膦保护的纳米团簇以及纳米簇系列结构性质相关性的脱落光。

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