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Microwave Assisted Conversion of an Amino Acid Into a Fluorescent Solution

机译:微波辅助将氨基酸转化为荧光溶液

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Microwave assisted synthesis is a well established method in organic and inorganic chemistry. It is also used in material science to realize novel carbon nanoparticles exhibiting fluorescence properties. The results presented here are related to a microwave driven solvothermal process used for the conversion of amino acid and 1,2-diaminoethane into fluorescent solutions. Arginine, lysine and glycine were used as amino acids. The process temperatures are set in the range of 80° to 140 °C and the maximum process pressure is 4.5 bar. The process duration is set from 5 to 30 minutes. The fluorescence effect is increased with increasing temperature. The prepared aqueous fluorescent solutions can be used as media to induce fluorescence in textile substrates. The current study can be understood as a first proof-of-concept of a very simple microwave-assisted solvothermal synthesis of fluorescent compounds useful for the modification of different substrates.
机译:微波辅助合成是有机化学和无机化学中公认的方法。它还在材料科学中用于实现显示荧光特性的新型碳纳米颗粒。此处介绍的结果与微波驱动的溶剂热工艺有关,该工艺用于将氨基酸和1,2-二氨基乙烷转化为荧光溶液。精氨酸,赖氨酸和甘氨酸用作氨基酸。过程温度设置在80°至140°C的范围内,最大过程压力为4.5 bar。处理时间设置为5到30分钟。荧光效果随温度升高而增加。所制备的荧光水溶液可以用作在纺织品基质中诱导荧光的介质。可以将当前的研究理解为非常简单的微波辅助溶剂热合成荧光化合物的第一个概念证明,该荧光化合物可用于修饰不同的底物。

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