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3D-Printing inside the Glovebox: A Versatile Tool for Inert-Gas Chemistry Combined with Spectroscopy

机译:手套箱内部的3D打印:惰性气体化学与光谱学结合的多功能工具

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摘要

3D-Printing with the well-established 'Fused Deposition Modeling' technology was used to print totally gas-tight reaction vessels, combined with printed cuvettes, inside the inert-gas atmosphere of a glovebox. During pauses of the print, the reaction flasks out of acrylonitrile butadiene styrene were filled with various reactants. After the basic test reactions to proof the oxygen tightness and investigations of the influence of printing within an inert-gas atmosphere, scope and limitations of the method are presented by syntheses of new compounds with highly reactive reagents, such as trimethylaluminium, and reaction monitoring via UV/VIS, IR, and NMR spectroscopy. The applicable temperature range, the choice of solvents, the reaction times, and the analytical methods have been investigated in detail. A set of reaction flasks is presented, which allow routine inert-gas syntheses and combined spectroscopy without modifications of the glovebox, the 3D-printer, or the spectrometers. Overall, this demonstrates the potential of 3D-printed reaction cuvettes to become a complementary standard method in inert-gas chemistry.
机译:具有成熟的“熔融沉积建模”技术的3D打印被用于在手套箱的惰性气体气氛中打印完全气密的反应容器,并结合了比色杯。在打印暂停期间,由丙烯腈丁二烯苯乙烯制成的反应烧瓶中充满了各种反应物。在通过基本测试反应证明了氧密性并研究了惰性气体气氛中的印刷影响之后,该方法的范围和局限性是通过新化合物与高反应性试剂(如三甲基铝)的合成以及通过UV / VIS,IR和NMR光谱。详细研究了适用的温度范围,溶剂的选择,反应时间和分析方法。提出了一组反应瓶,可以进行常规的惰性气体合成和组合光谱,而无需修改手套箱,3D打印机或光谱仪。总体而言,这证明了3D打印的反应比色皿有可能成为惰性气体化学领域的补充标准方法。

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