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Beneficial role of the nitrogen-doped carbon nanotubes in the synthesis of the active palladium supported catalyst

机译:氮掺杂碳纳米管在合成活性钯负载催化剂中的有益作用

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摘要

The use of nitrogen doped carbon nanotubes (N-CNTs) as a palladium catalyst support resulted in the formation of isolated palladium ions and metal nanoparticles, depending on the Pd content. It was found that the formation of isolated palladium ions is due to the presence of pyridinic nitrogen centers in the N-CNTs and does not depend on the method of palladium deposition (impregnation or reductive deposition). These ions possess high thermal stability in hydrogen atmosphere, poorly adsorb CO even at subambient temperature and are low active in catalytic hydrogenation of nitrobenzene to aniline. The beneficial role of the N-CNTs was found to be in the stabilization by graphitic nitrogen of the metallic Pd nanoparticles of similar to 1.5 nm size showing high activity towards aniline formation at atmospheric pressure. The possibility of the tailored synthesis of different metal species by means of the N-CNTs as a support opens a wide room for use of these carbon nanomaterials in various catalytic applications.
机译:取决于Pd含量,将氮掺杂碳纳米管(N-CNT)作为钯催化剂载体的形成导致分离的钯离子和金属纳米颗粒形成。结果发现,分离的钯离子的形成是由于N-CNT中吡啶氮中心的存在,并且不依赖于钯沉积(浸渍或还原沉积)的方法。这些离子在氢气氛中具有高的热稳定性,即使在脱节温度下也具有较差的吸附性,并且在硝基苯的催化氢化至苯胺中是低活性的。发现N-CNT的有益作用是通过类似于1.5nm尺寸的金属Pd纳米颗粒的石墨氮的稳定性,显示出在大气压下为苯胺形成的高活性。通过N-CNT作为支撑件定制不同金属物质的可能性使得在各种催化应用中使用这些碳纳米材料的宽空间。

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