Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence

ABSTRACT Aggregation‐induced emission (AIE) and thermally activated delayed fluorescence (TADF) are two optoelectronic properties with great potential for applications. However, metal nanoclusters exhibiting both AIE and TADF characteristics have not been extensively studied. This study investigates...

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Main Authors: Wei‐Yi Liang, Hai‐Ling Wang, Peng‐Xu Lu, Pei‐Yu Liao, Wei Deng, Jian‐Hua Jia, Ming‐Liang Tong
Format: Article
Language:English
Published: Wiley 2025-05-01
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Online Access:https://doi.org/10.1002/agt2.70019
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author Wei‐Yi Liang
Hai‐Ling Wang
Peng‐Xu Lu
Pei‐Yu Liao
Wei Deng
Jian‐Hua Jia
Ming‐Liang Tong
author_facet Wei‐Yi Liang
Hai‐Ling Wang
Peng‐Xu Lu
Pei‐Yu Liao
Wei Deng
Jian‐Hua Jia
Ming‐Liang Tong
author_sort Wei‐Yi Liang
collection DOAJ
container_title Aggregate
description ABSTRACT Aggregation‐induced emission (AIE) and thermally activated delayed fluorescence (TADF) are two optoelectronic properties with great potential for applications. However, metal nanoclusters exhibiting both AIE and TADF characteristics have not been extensively studied. This study investigates a binary cocrystal system based on silver nanoclusters—Ag6(Et2NCS2)6·[Ag11(AdmS)3(Et2NCS2)6]2 (1‐Ag6·(Ag11)2), aiming to explore the synergistic effects between flexible‐alkyl dithiol and rigid monothiol ligands. Due to the introduction of Ag6 structures, the system exhibits enhanced stability and modulated optical properties. The binary tricluster 1‐Ag6·(Ag11)2 demonstrates significant AIE behavior, with an approximately 15‐fold increase in intensity when the water volume fraction (fw) is 60%. Single‐crystal X‐ray diffraction analysis indicates that the enhanced AIE effect originates from intercluster hydrogen bonding interactions, which drive the self‐assembly of sub‐clusters and form hierarchical structures, thereby suppressing ligand rotation. In addition, the system exhibits the TADF phenomenon in the temperature range of 100−175 K. In order to further investigate the effect of ligand variations on optical properties, two unitary clusters, Ag11(AdmS)3(Et2NCS2)6 (2‐Ag11‐AS) and Ag11(tBuS)3(Et2NCS2)6 (3‐Ag11‐BS), are synthesized, and their roles in regulating optoelectronic properties are explored through ligand exchange reactions. This study provides important insights for the development of efficient luminescent materials with AIE and TADF properties, highlighting the critical roles of ligand exchange and structural configuration.
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spelling doaj-art-e55b0dba3af947c99eb454ddf2bc86bf2025-08-20T02:33:11ZengWileyAggregate2692-45602025-05-0165n/an/a10.1002/agt2.70019Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed FluorescenceWei‐Yi Liang0Hai‐Ling Wang1Peng‐Xu Lu2Pei‐Yu Liao3Wei Deng4Jian‐Hua Jia5Ming‐Liang Tong6Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaKey Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE for Functional Molecular Engineering Sun Yat‐Sen University Guangzhou ChinaABSTRACT Aggregation‐induced emission (AIE) and thermally activated delayed fluorescence (TADF) are two optoelectronic properties with great potential for applications. However, metal nanoclusters exhibiting both AIE and TADF characteristics have not been extensively studied. This study investigates a binary cocrystal system based on silver nanoclusters—Ag6(Et2NCS2)6·[Ag11(AdmS)3(Et2NCS2)6]2 (1‐Ag6·(Ag11)2), aiming to explore the synergistic effects between flexible‐alkyl dithiol and rigid monothiol ligands. Due to the introduction of Ag6 structures, the system exhibits enhanced stability and modulated optical properties. The binary tricluster 1‐Ag6·(Ag11)2 demonstrates significant AIE behavior, with an approximately 15‐fold increase in intensity when the water volume fraction (fw) is 60%. Single‐crystal X‐ray diffraction analysis indicates that the enhanced AIE effect originates from intercluster hydrogen bonding interactions, which drive the self‐assembly of sub‐clusters and form hierarchical structures, thereby suppressing ligand rotation. In addition, the system exhibits the TADF phenomenon in the temperature range of 100−175 K. In order to further investigate the effect of ligand variations on optical properties, two unitary clusters, Ag11(AdmS)3(Et2NCS2)6 (2‐Ag11‐AS) and Ag11(tBuS)3(Et2NCS2)6 (3‐Ag11‐BS), are synthesized, and their roles in regulating optoelectronic properties are explored through ligand exchange reactions. This study provides important insights for the development of efficient luminescent materials with AIE and TADF properties, highlighting the critical roles of ligand exchange and structural configuration.https://doi.org/10.1002/agt2.70019aggregation‐induced emissioncocrystallizationsilver clusterssupramolecular assemblythermally activated delayed fluorescence
spellingShingle Wei‐Yi Liang
Hai‐Ling Wang
Peng‐Xu Lu
Pei‐Yu Liao
Wei Deng
Jian‐Hua Jia
Ming‐Liang Tong
Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
aggregation‐induced emission
cocrystallization
silver clusters
supramolecular assembly
thermally activated delayed fluorescence
title Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
title_full Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
title_fullStr Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
title_full_unstemmed Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
title_short Cocrystallization of Binary Silver Clusters Into Supramolecular Assembly to Regulate Aggregation‐Induced Emission and Thermally Activated Delayed Fluorescence
title_sort cocrystallization of binary silver clusters into supramolecular assembly to regulate aggregation induced emission and thermally activated delayed fluorescence
topic aggregation‐induced emission
cocrystallization
silver clusters
supramolecular assembly
thermally activated delayed fluorescence
url https://doi.org/10.1002/agt2.70019
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