Mutoh Katsuya, Kawakita Sonomi, Yahagi Teppei, Nakashima Takuya
Department of Chemistry, Graduate School of Science, Osaka Metropolitan University, 3-3-138 Sugimoto, Sumiyoshi, Osaka 558-8585, Japan.
Nanoscale. 2024 Dec 5;16(47):21776-21782. doi: 10.1039/d4nr03810j.
Surface ligand modification on atomically precise metal clusters is one of the important strategies not only to stabilize monodisperse clusters, but also to derive unique optical and electronic properties. The chiral coordination of surface ligands on clusters controls the global chirality in clusters giving rise to unambiguous optical activity including circular dichroism (CD) and circularly polarized luminescence (CPL). Stereoselective synthesis of intrinsically chiral clusters has been achieved by the use of chiral ligands stabilizing one-handed clusters selectively. Herein, we investigate the effect of chiral ligand coordination on the deracemization of intrinsically chiral Au superatom clusters. The mixture of achiral bis(diphenylphosphino)ethane (DPPE) and chiral (,)-1,2-bis[(2-methoxyphenyl)phenylphosphino]ethane (-DIPAMP) led to the formation of a mixture of [Au(-DIPAMP)(DPPE)Cl] clusters with varied -values ( = 0-5). Reverse phase HPLC successfully fractionalized the mixture into solutions composed of single component Au clusters depending on the -values. The separated Au clusters afforded similar optical activity to that of [Au(-DIPAMP)Cl] in the CD study regardless of -values ( = 1-4). The DFT calculation supports that the coordination of a single DIPAM ligand is enough to bias the twisting direction in the Au superatom with dictating the tortional orientation of other four DPPE ligands. The emergence of the "sergeants-and-soldiers principle", wherein a small number of chiral ligands determine the chiral orientation of other achiral ligands, is thus demonstrated in the synthesis of intrinsically chiral Au clusters.
在原子精确的金属簇上进行表面配体修饰不仅是稳定单分散簇的重要策略之一,也是获得独特光学和电子性质的重要策略之一。簇表面配体的手性配位控制着簇中的整体手性,从而产生明确的光学活性,包括圆二色性(CD)和圆偏振发光(CPL)。通过使用选择性稳定单手簇的手性配体,已经实现了本征手性簇的立体选择性合成。在此,我们研究了手性配体配位对本征手性金超原子簇消旋化的影响。非手性双(二苯基膦基)乙烷(DPPE)和手性(,)-1,2-双[(2-甲氧基苯基)苯基膦基]乙烷(-DIPAMP)的混合物导致形成具有不同-值(= 0-5)的[Au(-DIPAMP)(DPPE)Cl]簇的混合物。反相高效液相色谱成功地根据-值将混合物分离成由单一组分金簇组成的溶液。在CD研究中,无论-值(= 1-4)如何,分离出的金簇都具有与[Au(-DIPAMP)Cl]相似的光学活性。DFT计算支持单个DIPAM配体的配位足以使金超原子中的扭曲方向产生偏差,同时决定其他四个DPPE配体的扭转取向。因此,在本征手性金簇的合成中证明了“兵卒原则”的出现,即少量手性配体决定其他非手性配体的手性取向。