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首页> 外文期刊>Green Chemistry Letters and Reviews >The product of interaction of elemental sulfur and dimethylphosphate 1,3-dimethylimidazolium is a new green initiator of formaldehyde polymerization
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The product of interaction of elemental sulfur and dimethylphosphate 1,3-dimethylimidazolium is a new green initiator of formaldehyde polymerization

机译:元素硫和二甲基磷酸二甲基磷酸铝相互作用的产物是甲醛聚合的新型绿引发剂

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Interaction of 1,3-dimethylimidazolium dimethylphosphate and elemental sulfur synthesized a new initiator of polymerization of formaldehyde, opening the possibility of its implementation in accordance with the principles of Green chemistry. The possibility of fast oligomerization of formaldehyde in an aqueous medium with the formation of insoluble products, the structure of which is determined by FTIR, MALDI-TOF, 1 H NMR, 13 C NMR, HSQC and HMBC spectroscopy, is shown. It was found that (phosphonooxy-)oligosulfanide anion initiates formaldehyde oligomerization by anionic mechanism with chain termination due to interaction with water. It was shown that the synthesized formaldehyde oligomers retain resistance to degradation up to a temperature of 443?K, and then slowly thermally decompose to a temperature of 513?K, above which the rate of thermal degradation increases significantly.
机译:1,3-二甲基咪唑磷酸铵和元素硫的相互作用合成了甲醛聚合的新引发剂,根据绿色化学原理开辟其实施的可能性。 显示了在水性介质中快速低聚甲醛的可能性,形成不溶性产物,其结构由FTIR,MALDI-TOF,1 H NMR,13 C NMR,HSQC和HMBC光谱法测定。 发现(膦酰氧基 - )寡核苷酸阴离子通过与水相互作用引起的阴离子机制引发甲醛寡聚化。 结果表明,合成的甲醛低聚物将抗降解的耐高量降低至443·k的温度,然后缓慢地热分解为513Ω·k的温度,高于该温度,高于该温度,高于热降解速率显着增加。

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