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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/100296


    Title: Riboflavin chelated luminescent metal-organic framework: Identified by liquid-assisted grinding for large-molecule sensing via chromaticity coordinates
    Authors: 李弘霖;Lee, Tu;Tsai, Meng Hsun;Lee, Hung Lin
    Contributors: 工學院化學工程與材料工程學系
    Keywords: Condensed matter: electronic structure, electrical, magnetic, and optical properties;Condensed matter: structure, mechanical and thermal properties;Cross-disciplinary physics: materials science;rheology;Exact sciences and technology;Materials science;Optical properties and condensed-matter spectroscopy and other interactions of matter with particles and radiation;Optical properties of bulk materials and thin films;Organic compounds;Other materials;Photoluminescence;Physics;Specific materials;Structure of solids and liquids;crystallography;Structure of specific crystalline solids
    Date: 2012-06-06
    Issue Date: 2026-04-21 13:56:35 (UTC+8)
    Publisher: American Chemical Society;Washington,DC: American Chemical Society
    Abstract: 摘要: Liquid-assisted grinding protocol has been successfully employed to identify (1) the use of riboflavin as a sensing molecule for melamine and acetoguanamine and (2) the chelation of riboflavin on a silver atom. Riboflavin is then chelated onto a visible light-emitting, silver-containing metal–organic framework, AgL {i.e., [AgL] n ·nH2O (L = 4-cyanobenzoate)} to produce (AgL)-(riboflavin) chelation crystals. These chelation crystals can be used for the detection of melamine and acetoguanamine by forming binding crystals of (AgL)-(riboflavin)-(melamine) and (AgL)-(riboflavin)-(acetoguanamine). The Commission Internationale de l'Eclairage (CIE) 1931 chromaticity coordinates of AgL crystals, (AgL)-(riboflavin) chelation crystals, (AgL)-(riboflavin)-(melamine) binding crystals, and (AgL)-(riboflavin)-(acetoguanamine) binding crystals based on their solid-state photoluminescence (PL) emission spectra are calculated to be approximately (0.16, 0.16), (0.32, 0.44), (0.25, 0.37), and (0.23, 0.15), respectively. The original PL emission of AgL may be attributed to ligand-centered luminescence. However, the chelation with riboflavin may cause (1) a bathochromatic spectral shift (i.e., red shift), (2) an emission broadening, and (3) a quenching effect through the mode of Förster resonance energy transfer. The binding with the amine analytes (i.e., good electron donors), such as melamine and acetoguanamine, may alter the redox potential of riboflavin inhibiting quenching and enhancing luminescence of binding crystals of (AgL)-(riboflavin)-(melamine) and (AgL)-(riboflavin)-(acetoguanamine). π → π* energy in the riboflavin-melamine or riboflavin-acetoguanamine binding complex is then enhanced. Consequently, hypsochromic spectral shifts (i.e., blue shift) are observed in their PL emission responses.
    其他題名: Cryst. Growth Des
    出版者: Washington,DC: American Chemical Society
    出版日期: 2012-06-06
    出處: Crystal growth & design, 2012-06, Vol.12 (6), p.3181-3190
    資源來源: American Chemical Society Journals
    版權: Copyright © 2012 American Chemical Society
    版權: 2015 INIST-CNRS
    識別號: ISSN: 1528-7483
    識別號: EISSN: 1528-7505
    識別號: DOI: 10.1021/cg3003492
    Appears in Collections:[Department of Chemical and Materials Engineering] journal & Dissertation

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