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Gel electrophoresis separation and origins of light emission in fluorophores prepared from citric acid and ethylenediamine

机译:柠檬酸和乙二胺制得的荧光团的凝胶电泳分离及发光源

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摘要

We investigated light emission of hydrothermally treated citric acid and ethylenediamine (EDA) with various precursor ratios using gel-electrophoresis. We show that this relatively simple approach can deliver significant insights into the origins of photoluminescence. We found that products of the synthesis consist of both positively and negatively charged species and exhibit large dispersion in electrophoretic mobility (i.e. charge-to-size ratio). We observed that despite the large dispersion of the reaction products the blue light emission is confined to discrete bands clearly identifiable in the gel. We demonstrate clear evidence that this emission originates from the negatively charged light molecular fraction with the highest mobility which shows no excitation-dependent light emission. This molecular fluorophore exhibits spectral characteristics similar to previously reported 1,2,3,5-tetrahydro-5-oxo-imidazo[1,2-a]pyridine-7-carboxylic acid (IPCA). Secondary gel electrophoresis run performed on the bands extracted from the first run indicates that no further separation takes place. On the basis of our experimental results, we conclude that relatively stable binding exists between IPCA and EDA-derived product. Thus, the products of the reaction contain IPCA both in molecular form and in complexes with EDA-derived products. We conclude that excitation-dependent emission is related to the fluorophore binding to the positively charged EDA-derived products with a positive charge.
机译:我们使用凝胶电泳研究了水热处理的柠檬酸和乙二胺(EDA)具有不同的前体比率的发光。我们表明,这种相对简单的方法可以为光致发光的起源提供重要的见识。我们发现合成的产物由带正电和带负电的物质组成,并且在电泳迁移率(即,电荷与尺寸的比)中显示出大的分散。我们观察到,尽管反应产物分散很大,但蓝光发射局限于凝胶中可清楚识别的离散带。我们证明了清楚的证据,这种发射来自具有最高迁移率的带负电的光分子部分,该分子没有显示依赖于激发的光发射。该分子荧光团显示出与先前报道的1,2,3,5-四氢-5-氧代-咪唑并[1,2-a]吡啶-7-羧酸(IPCA)相似的光谱特征。对从第一次运行中提取的条带进行的第二次凝胶电泳表明,没有进一步的分离发生。根据我们的实验结果,我们得出结论,IPCA和EDA衍生产品之间存在相对稳定的结合。因此,反应产物含有分子形式以及与EDA衍生产物复合的IPCA。我们得出的结论是,依赖于激发的发射与荧光团与带正电荷的带正电的EDA衍生产品的结合有关。

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