Chiral Separation of Copper Sulfide [S-Cu<sub>36</sub>] Nanocluster Using a Chiral Adaptive Counterion.

Guo, Yumeng; Zhang, Zhenyi; Han, Haixiang; Zhou, Zheng · Nano Lett · 2024

basic_science · Level V

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Abstract

This work presents a new strategy to achieve the growth of copper sulfide nanoclusters with high nuclearity. Through a phosphine-assisted C-S reductive cleavage approach, an intrinsically chiral [Cu<sub>4</sub>] cluster passes through a [S-Cu<sub>9</sub>] cluster and transforms into a higher-nuclearity [S-Cu<sub>36</sub>] cluster, which features a core-shell structure with a [Cu<sub>4</sub>]<sup>4+</sup> core encapsulated by a chiral [Cu<sub>20</sub>S<sub>12</sub>] shell. Interestingly, the spiral arrangement of the bidental ligands on the surface of the [S-Cu<sub>36</sub>] cluster leads to the <i>L-</i>/<i>R</i>-enantiomeric configurations. Moreover, by utilization of [Na(THF)<sub>6</sub>]<sup>+</sup> as a chiral adaptive counterion, [S-Cu<sub>36</sub>] can be interlocked separately, thus enabling the isolation of homochiral clusters. Theoretical calculation suggests that the configuration transition between two enantiomeric [Na(THF)<sub>6</sub>]<sup>+</sup> species is favorable at room temperature, thereby promoting the cocrystallization of resulting chiral products. This study introduces a novel perspective on the synthesis of chiral copper sulfide nanoclusters and presents an innovative approach to achieving the chiral separation of nanoclusters.