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Hydrazine assisted catalytic hydrogenation of PNP to PAP by NixPd100?x nanocatalyst

机译:NixPD100 X纳米催化剂PNP辅助催化氢化PNP催化氢化

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The present study demonstrates the catalytic reduction of PNP to PAP by N _(2) H _(4) in the presence of our room temperature synthesized Ni–Pd bimetallic nanoparticles (BMNPs) in aqueous alkaline solution. Ni _( x ) Pd _(100? x ) BMNPs of different compositions were synthesized by co-reduction of hydroxides of Pd ~(2+) and Ni ~(2+) in the presence of PVP at 298 K. The bimetallic structure of the Ni _( x ) Pd _(100? x ) nanoparticles is confirmed by XRD, TEM, TEM-EDS, HRTEM, SAED and XPS studies. Among the various compositions Ni _(70) Pd _(30) shows maximum efficiency towards the catalytic reduction of PNP to PAP in the presence of hydrous hydrazine. Detailed kinetics analysis at room temperature revealed that the reduction follows the Langmuir–Hinshelwood mechanism where PNP reduction occurred through intermolecular electron transfer between N _(2) H _(4) and PNP when both were adsorbed on the catalytic site. The catalyst remains active at the end of the reaction and can be recycled.
机译:本研究表明,在水性碱水溶液中,在我们的室温合成的Ni-Pd双金属纳米颗粒(BMNP)存在下,通过N _(2)H _(4)催化降低PNP至PAP的催化还原。通过在PVP的PVP存在下在298K的情况下通过共减少PD〜(2+)和Ni〜(2+)的氢氧化物来合成不同组合物的Ni _(x)Pd _(100?x)Bmnps .bimetallic结构Ni _(x)Pd _(100≤x)纳米颗粒通过XRD,TEM,TEM-EDS,HRTEM,SAED和XPS研究证实。在各种组合物中,Ni _(70)Pd _(30)表示在含水肼存在下促进PNP至罂粟的催化降低的最大效率。在室温下进行详细的动力学分析显示,减少遵循Langmuir-hinshelwood机构,其中当两者在催化位点上都是在N _(2)H _(4)和PNP之间的分子间电子转移发生PNP还原。催化剂在反应结束时保持活性,可以再循环。

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