Negishi Yuichi, Horihata Hikaru, Ebina Ayano, Miyajima Sayuri, Nakamoto Mana, Ikeda Ayaka, Kawawaki Tokuhisa, Hossain Sakiat
Department of Applied Chemistry, Faculty of Science, Tokyo University of Science Kagurazaka, Shinjuku-ku Tokyo 162-8601 Japan
Research Institute for Science & Technology, Tokyo University of Science Kagurazaka, Shinjuku-ku Tokyo 162-8601 Japan.
Chem Sci. 2022 Mar 30;13(19):5546-5556. doi: 10.1039/d2sc00423b. eCollection 2022 May 18.
To use atomically precise metal nanoclusters (NCs) in various application fields, it is essential to establish size-selective synthesis methods for the metal NCs. Studies on thiolate (SR)-protected gold NCs (Au (SR) NCs) revealed that the atomically precise Au (SR) NC, which has a different chemical composition from the precursor, can be synthesized size-selectively by inducing transformation in the framework structure of the metal NCs by a ligand-exchange reaction. In this study, we selected the reaction of [Au(SCHPh)] (SCHPh = 2-phenylethanethiolate) with 4--butylbenzenethiol ( BuPhSH) as a model ligand-exchange reaction and attempted to obtain new metal NCs by changing the amount of thiol, the central atom of the precursor NCs, or the reaction time from previous studies. The results demonstrated that [Au(SPh Bu)], [AuPd(SPh Bu)] (Pd = palladium) and [AuPt(SCHPh)(SPh Bu)] (Pt = platinum) were successfully synthesized in a high proportion. To best of our knowledge, no report exists on the selective synthesis of these three metal NCs. The results of this study show that a larger variety of metal NCs could be synthesized size-selectively than at present if the ligand-exchange reaction is conducted while changing the reaction conditions and/or the central atoms of the precursor metal NCs from previous studies.
为了在各种应用领域中使用原子精确的金属纳米团簇(NCs),建立金属NCs的尺寸选择性合成方法至关重要。对硫醇盐(SR)保护的金纳米团簇(Au(SR)NCs)的研究表明,通过配体交换反应诱导金属NCs骨架结构的转变,可以尺寸选择性地合成与前体具有不同化学组成的原子精确的Au(SR)NCs。在本研究中,我们选择了[Au(SCHPh)](SCHPh = 2-苯乙硫醇盐)与4-丁基苯硫醇(BuPhSH)的反应作为模型配体交换反应,并尝试通过改变硫醇的量、前体NCs的中心原子或与先前研究不同的反应时间来获得新的金属NCs。结果表明,[Au(SPhBu)]、[AuPd(SPhBu)](Pd = 钯)和[AuPt(SCHPh)(SPhBu)](Pt = 铂)得以高比例成功合成。据我们所知,尚无关于这三种金属NCs选择性合成的报道。本研究结果表明,如果在改变反应条件和/或前体金属NCs的中心原子的同时进行配体交换反应,就可以比目前更能尺寸选择性地合成更多种类的金属NCs。