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Fabrication of High-Performance Palladium Supported on Activated Charcoal Nanocatalyst for Synthesis of Morphine Opioid Analgesics

机译:在活性炭纳米催化剂上支持的高性能钯,用于合成吗啡阿片类镇痛药

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High-performance palladium supported on activated charcoal (Pd/AC_H) is an important nanocatalyst for the synthesis of different types of opioid analgesics. In this work, the Pd/AC_H nanocatalysts are fabricated by a suitable method using the chemical reduction with ethylene glycol (EG), 1-propanol, ethanol, and methanol, which act as reducing, stabilizing, and dispersing agents. Since this method does not require surfactants and reducing agents that are hazardous to the environment and human health, it is an environmentally friendly method. The activity of produced nanocatalysts was determined by catalytic hydrogenation of 14-hydroxynormor-phinone to noroxymorphone because noroxymorphone is the key active metabolite of oxycodone, noroxycodone, and oxy-morphone. Among catalysts, it is specified that nanocatalyst prepared by EG (Pd/AC_(HEG)) has the highest activity. The effect of the EG for increasing the rate of Pd reduction is related to its high boiling point, which results in a decrease in particle size. The results of the reusability of the Pd/AC_(HEG) nanocatalyst show that the activity of nanocatalyst is reduced by 12% after four runs. Fourier-transform infrared (FTIR), inductively coupled plasma (ICP), transmission electron microscopy (TEM), x-ray diffraction (XRD), Brunauer-Emmett-Teller (BET), x-ray photo-electron spectroscopy (XPS), and H2 chemisorption analyses were used for the analysis of Pd/AC_H nanocatalysts.
机译:活性炭(PD/AC_H)支持的高性能钯是合成不同类型的阿片类镇痛药的重要纳米催化剂。在这项工作中,PD/AC_H纳米催化剂是通过使用乙二醇(例如),1-丙二醇,乙醇和甲醇的化学还原来制造的,它们的作用是还原,稳定和分散剂。由于这种方法不需要表面活性剂和对环境和人类健康危害的药物,因此是一种环保方法。生产的纳米催化剂的活性是通过将14-羟基亚型 - 音酮催化为Noroxymorphone确定的,因为Noroxymorphone是羟考酮,Noroxycodone和Oxy-Morphone的关键活性代谢物。在催化剂中,指定由EG(PD/AC_(HEG))制备的纳米催化剂具有最高的活性。 EG增加PD降低速率的影响与其高沸点有关,从而导致粒径减少。 PD/AC_(HEG)纳米催化剂的可重复性结果表明,纳米催化剂的活性在四次运行后降低了12%。傅立叶转换红外(FTIR),电感耦合等离子体(ICP),透射电子显微镜(TEM),X射线衍射(XRD),Brunauer-Emmett-Teller(BET),X射线照相电子光谱(XPS),X射线照相H2化学吸附分析用于PD/AC_H纳米催化剂的分析。

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