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Role of silicon/aluminum ratio on immobilization and stability of rhodium complexes on ZSM-5.

机译:硅铝比对铑配合物在ZSM-5上的固定和稳定性的作用。

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Rhodium complexes within the pores of zeolite ZSM-5 with varying Si/Al ratios (Si/Al 23, Si/Al 50, and Si/Al 280) were prepared from Rh1+ (CO)2(C5H7O2), Rh 22+(CO2CH3)4, and Rh 3+(C5H7O2)3 followed by thermal treatment in He. IR results indicate that changing the Si/Al ratio stabilizes different Rh species, with the formation of Rh(I), Rh(II), or Rh(III) complexes along with the ability to coordinate two to four ligands. Through X-ray absorption spectroscopy, changes in oxidation state are followed and the final structure determined. Both the Si/Al ratio and rhodium precursor structure play a role, with Rh clusters of two atoms, four atoms, or six atoms immobilized on ZSM-5. Differences in bond lengths are affected by Si/Al ratio, creating tighter or more expanded clusters. This variation in structure caused by the Si/Al ratio shows potential for affecting the amount of hydrogen produced from the partial oxidation of methanol.
机译:从Rh1 +(CO)2(C5H7O2),Rh 22+(CO2CH3)制备ZSM-5沸石孔内具有不同Si / Al比(Si / Al 23,Si / Al 50和Si / Al 280)的铑配合物)4和Rh 3+(C5H7O2)3,然后在He中进行热处理。红外结果表明,改变Si / Al比例可稳定不同的Rh物种,形成Rh(I),Rh(II)或Rh(III)配合物,并具有配位2至4个配体的能力。通过X射线吸收光谱法,跟踪氧化态的变化并确定最终结构。 Si / Al比和铑前体结构都起作用,两个原子,四个原子或六个原子的Rh簇固定在ZSM-5上。键长的差异受Si / Al比的影响,从而形成更紧密或更扩展的簇。由Si / Al比引起的这种结构变化显示出可能影响由甲醇的部分氧化产生的氢的量。

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