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Generation and Characteristics of IV-VI transition Metal Nitride and Carbide Nanoparticles using a Reactive Mesoporous Carbon Nitride

机译:反应性中孔碳氮化物制备IV-VI过渡金属氮化物和碳化物纳米粒子的特性

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摘要

Interstitial nitrides and carbides of early transition metals in groups IV–VI exhibit platinum-like electronic structures, which make them promising candidates to replace noble metals in various catalytic reactions. Herein, we present the preparation and characterization of nano-sized transition metal nitries and carbides of groups IV–VI (Ti, V, Nb, Ta, Cr, Mo, and W) using mesoporous graphitic carbon nitride (mpg-C3N4), which not only provides confined spaces for restricting primary particle size but also acts as a chemical source of nitrogen and carbon. We studied the reactivity of the metals with the template under N2 flow at 1023 K while keeping the weight ratio of metal to template constant at unity. The produced nanoparticles were characterized by powder X-ray diffraction, CHN elemental analysis, nitrogen sorption, X-ray photoelectron spectroscopy, and transmission electron microscopy. The results show that Ti, V, Nb, Ta, and Cr form nitride phases with face centered cubic structure, whereas Mo and W forme carbides with hexagonal structures. The tendency to form nitride or carbide obeys the free formation energy of the transition metal nitrides and carbides. This method offers the potential to prepare the desired size, shape and phase of transition metal nitrides and carbides that are suitable for a specific reaction, which is the chief objective of materials chemistry.
机译:IV-VI组早期过渡金属的间隙氮化物和碳化物表现出类似铂的电子结构,这使其有望在各种催化反应中替代贵金属。在此,我们介绍了使用介孔石墨氮化碳(mpg-C3N4)制备和表征IV-VI族(Ti,V,Nb,Ta,Cr,Mo和W)的纳米级过渡金属硝酸盐和碳化物的方法,不仅提供了限制初级颗粒大小的狭窄空间,而且还充当了氮和碳的化学来源。我们研究了金属与模板在N2流下在1023 K下的反应性,同时使金属与模板的重量比保持恒定不变。通过粉末X射线衍射,CHN元素分析,氮吸附,X射线光电子能谱和透射电子显微镜来表征所产生的纳米颗粒。结果表明,Ti,V,Nb,Ta和Cr形成具有面心立方结构的氮化物相,而Mo和W形成具有六方结构的碳化物。形成氮化物或碳化物的趋势服从过渡金属氮化物和碳化物的自由形成能。该方法提供了制备适合特定反应的过渡金属氮化物和碳化物所需尺寸,形状和相的潜力,这是材料化学的主要目标。

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