Cinchonidine vs Cinchonine: Stereochemical Control of Architecture and Circularly Polarized Luminescence in Chiral Cu4I4–Cluster-Based Coordination Polymers

Abstract Employing the epimeric ligands, cinchonidine (L1) and cinchonine (L2), two chiral Cu(I) coordination polymers were synthesized: a 1D chain Cu4I4(L1) and a 3D framework Cu4I4(L2). Structural analyses reveal that Cu4I4(L1) incorporates interconnected distorted gyroscope-like and cubane-type Cu4I4 clusters, whereas Cu4I4(L2) comprises solely cubane-type Cu4I4 clusters. This architectural divergence could be attributed to the distinct spatial preferences of the two N-donor atoms in the epimeric ligands. Photoluminescence studies show that Cu4I4(L1) emits orange light with a single broad band (λem = 614 nm, ΦPL = 21.03%), while Cu4I4(L2) displays yellow emission consisting of multiple bands (λem = 575 nm, ΦPL = 1.32%). DFT calculations correlate these differences to the variations in frontier orbital distributions and electronic transition pathways. Notably, the two compounds exhibit distinct circularly polarized luminescence with maximum glum values of +6.1 × 10–3 for Cu4I4(L1) and –2.4 × 10–3 for Cu4I4(L2). This work illustrates how subtle stereochemical differences in epimeric ligands direct the structural self-assembly of chiral Cu(I)-cluster-based coordination polymers, thereby tuning their photophysical and chiroptical properties, and provides a valuable guideline for designing CPL-active Cu(I)-cluster-based materials.

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Journal
Inorganic Chemistry
Published
2026-09-14
DOI
https://doi.org/10.1021/acs.inorgchem.6c03427
Primary Topic
Metal-Organic Frameworks: Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Cinchonidine vs Cinchonine: Stereochemical Control of Architecture and Circularly Polarized Luminescence in Chiral Cu4I4–Cluster-Based Coordination Polymers

Muxin Yu, Zehong Wang, Jiangquan Lv, Weilong Zhang et al.
Inorganic Chemistry
Metal-Organic Frameworks: Synthesis and Applications
article

Cinchonidine vs Cinchonine: Stereochemical Control of Architecture and Circularly Polarized Luminescence in Chiral Cu4I4–Cluster-Based Coordination Polymers

Muxin Yu, Zehong Wang, Jiangquan Lv, Weilong Zhang, Mingyan Wu, Xiaoyan Li, Mianhe Xu, Yunlong Yu, Cheng Chen, Zhiping Lin, Yida Wu, Ting Zhao
article en

Abstract

Abstract Employing the epimeric ligands, cinchonidine (L1) and cinchonine (L2), two chiral Cu(I) coordination polymers were synthesized: a 1D chain Cu4I4(L1) and a 3D framework Cu4I4(L2). Structural analyses reveal that Cu4I4(L1) incorporates interconnected distorted gyroscope-like and cubane-type Cu4I4 clusters, whereas Cu4I4(L2) comprises solely cubane-type Cu4I4 clusters. This architectural divergence could be attributed to the distinct spatial preferences of the two N-donor atoms in the epimeric ligands. Photoluminescence studies show that Cu4I4(L1) emits orange light with a single broad band (λem = 614 nm, ΦPL = 21.03%), while Cu4I4(L2) displays yellow emission consisting of multiple bands (λem = 575 nm, ΦPL = 1.32%). DFT calculations correlate these differences to the variations in frontier orbital distributions and electronic transition pathways. Notably, the two compounds exhibit distinct circularly polarized luminescence with maximum glum values of +6.1 × 10–3 for Cu4I4(L1) and –2.4 × 10–3 for Cu4I4(L2). This work illustrates how subtle stereochemical differences in epimeric ligands direct the structural self-assembly of chiral Cu(I)-cluster-based coordination polymers, thereby tuning their photophysical and chiroptical properties, and provides a valuable guideline for designing CPL-active Cu(I)-cluster-based materials.

Inorganic Chemistry
Chinese Academy of Engineering (CN), Fujian Jiangxia University (CN), University of Chinese Academy of Sciences (CN), Fuzhou University (CN)
National Natural Science Foundation of China, Chinese Academy of Sciences, Haixi Institute, Chinese Academy of Sciences, Natural Science Foundation of Fujian Province, State Key Laboratory of Structural Chemistry
Sustainable cities and communities
Openalex Percentile: Top 26%
Metal-Organic Frameworks: Synthesis and Applications
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