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August 14, 202517 citations

A Semiconductor Nanocluster Platform with Four Structural Configurations: An Ionic Pair with Tunable Chirality.

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FHFang HaoLGLonglong GengZZZheng Zhou

Key Points

  • This research presents a semiconductor nanocluster platform featuring ionic pairs that exhibit tunable chirality.
  • The bi-nanocluster system comprises isostructural copper sulfide nanoclusters with distinct charge differences.
  • Circular dichroism spectroscopy reveals variations in chiroptical responses due to different chiral ligands.
  • The findings suggest new avenues for utilizing ionic nanoclusters in advancing semiconductor technology.

Abstract

In chemistry, a cluster refers to an ensemble of a certain number of atoms that exhibit distinct physicochemical properties as a unified entity. Isostructural clusters, with subtle variations in structure or composition, can display opposite charges, behaving like monatomic ions to undergo classical reaction processes like disproportionation. Herein, we report that the semiconductor nanoclusters can be obtained in the form of a co-crystallized ionic pair, Cu56S12(SAdm)20(PP)10+S@Cu56S12(SAdm)20(PP)10- (abbreviated as S-Cu56·S@S-Cu56 hereafter). This bi-nanocluster system is a derivative of a neutral copper sulfide nanocluster S-Cu56 with an interesting onion-like structural configuration containing multiple shells. It consists of two nearly isostructural copper sulfide nanoclusters with opposite charges that differ only by the presence of a S2- ion at the center of the cluster assembly. This represents an interesting ionic bi-nanocluster system within the p-type copper sulfide semiconductor family, offering the potential to exhibit electrical properties not observed in the individual component nanoclusters. Notably, by utilizing different chiral carboxylate ligands, chirality can be concurrently imparted to the inorganic cores of both ionic clusters, thereby enabling distinct chiroptical responses as revealed by circular dichroism spectroscopy. This eventually results in four different structural configurations based on this onion-like semiconductor nanocluster platform.

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Cite This Study

Hao et al. (2025) studied this question.

synapsesocial.com/papers/689fc6912abb084d53ed276ahttps://doi.org/10.1021/jacs.5c12110
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