4.7 Article

Luminescence-Color-Changing Sensing toward Melamine Based on a White-Light-Emitting Film

期刊

ACS APPLIED POLYMER MATERIALS
卷 3, 期 6, 页码 2998-3008

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsapm.1c00162

关键词

chemosensor; melamine; dairy product; luminescence-color-changing sensing; white-light emission; lanthanide coordination polymer; PMMA film; hydrogen bond

资金

  1. National Natural Science Foundation of China [22075071]
  2. 2020 Special Project of United Dairy College in East University of Heilongjiang [LHXYDS202001, HDFHX160105]
  3. Central Government

向作者/读者索取更多资源

In this work, stable films with tunable luminescence color, even white-light emission are prepared by uniformly doping amphophilic Ln-d-DBTA into a PMMA matrix. A sensing process toward melamine in various dairy products is conducted, showing excellent sensitivity and color changes. The study demonstrates the promising practicality of the white-light-emitting film in monitoring quality of dairy products by connecting LnCPs with the PMMA matrix and promoting their photophysical properties.
Isostructural lanthanide coordination polymers, [Ln(d-DBTA)(d-HDBTA)(H2O)(5)](n) (Ln-d-DBTA; d-H(2)DBTA = d-O,O' -dibenzoyl tartaric acid; Ln = La, Ce, Nd, Eu, Gd, and Tb), are synthesized and characterized. By uniformly doping this amphophilic Ln-d-DBTA into a poly(methyl methacrylate) (PMMA) matrix, we prepare stable films with tunable luminescence color, even white-light emission. Except for providing the blue-light component, the PMMA matrix plays indispensable roles in dispersing the 1D LnCPs via hydrogen bonds, transferring electrons to organic ligands by means of photoinduced electron transfer, and further sensitizing the luminescence of lanthanide ions. Then, a bifunctional sensing process toward melamine in various dairy products is conducted in terms of luminescent intensity and color. Consequently, the as-prepared white-light-emitting film exhibits 0.012 mg/kg limit of detection and obvious luminescence-color changes from white to blue. The excellent sensitivity, reliability, selectivity, stability, competitiveness, and recyclability state the promising practicality in monitoring quality of dairy products. In this work, using a battery of experimental techniques and theoretical calculation, we show how the PMMA matrix connects the LnCPs and promotes their photophysical properties, what changes have taken place for the energy- and electron-transfer pathways of the as-prepared chemosensor after adsorbing melamine, and why this convenient testing material is applicable.

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