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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26636
Title: Nanoscale layer-separated zincophosphate framework enabled by dual-mode aromatic pillar engineering for selective luminescent dye detection
Authors: Jian, Jia-Yi
Wei, Pi-Chen
Chang, Kai-Chi 
Hsu, Chun-Ru 
Lu, Ching-Ping 
Wang, Chih-Min 
Issue Date: 2026
Publisher: ROYAL SOC CHEMISTRY
Start page/Pages: 7
Source: DALTON TRANSACTIONS
Abstract: 
The integration of bulky pi-conjugated organic ligands into crystalline metal phosphate frameworks is often hindered by crystal growth challenges that limit access to definitive structural information. In this work, we successfully obtained a three-dimensional zincophosphate framework incorporating the large 4,4 '-di(4-pyridyl)biphenyl (DPBP) ligand, which features an unprecedented nanoscale interlayer separation exceeding 20 & Aring;. Single-crystal X-ray diffraction (SCXD) reveals that DPBP simultaneously adopts bidentate pillar and monodentate pendant coordination modes, generating a robust hierarchical pillared architecture with exceptional thermal and chemical stability. The material exhibits pronounced ligand-to-metal charge transfer luminescence that is selectively quenched in the presence of Rhodamine 6G (R6G), enabling sensitive dye detection with a detection limit as low as 2.52 & times; 10-6 M. Spectral overlap between the framework emission and R6G absorption confirms an efficient donor-to-acceptor energy-transfer pathway as the sensing mechanism. This study demonstrates a versatile structural design strategy for stabilizing large aromatic linkers within metal phosphate scaffolds and establishes a durable solid-state platform for luminescent molecular recognition and dye sensing.
URI: http://scholars.ntou.edu.tw/handle/123456789/26636
ISSN: 1477-9226
DOI: 10.1039/d6dt00476h
Appears in Collections:海洋生物科技學士學位學程(系)
生命科學暨生物科技學系
環境生物與漁業科學學系

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