电子顺磁共振
漫反射红外傅里叶变换
沸石
氮氧化物
光谱学
化学
金属
扩展X射线吸收精细结构
漫反射
催化作用
吸收光谱法
大气温度范围
吸收(声学)
无机化学
分析化学(期刊)
材料科学
物理化学
光催化
核磁共振
有机化学
光学
气象学
物理
复合材料
燃烧
量子力学
作者
Xiaofan Yang,Zili Wu,Melanie Moses‐DeBusk,David R. Mullins,Shannon M. Mahurin,Robert A. Geiger,Michelle K. Kidder,Chaitanya K. Narula
摘要
A series of new heterobimetallic zeolites has been synthesized by incorporating a secondary metal cation M (Sc 3+, Fe 3+, In 3+, and La 3+ ) in Cu-exchanged ZSM-5, zeolite-β, and SSZ-13 zeolites under carefully controlled experimental conditions. Characterization by diffuse-reflectance ultraviolet–visible spectroscopy (UV–vis), X-ray powder diffraction (XRD), extended X-ray absorption fine structure spectroscopy (EXAFS), and electron paramagnetic resonance spectroscopy (EPR) does not permit conclusive structural determination but supports the proposal that M 3+ is hosted in zeolite structures in the vicinity of Cu(II), resulting in high NO x conversion activity at 150 °C. Among various zeolites reported here, CuFe-SSZ-13 offers the best NO x conversion activity in the 150–650 °C range and is hydrothermally stable when tested under accelerated aging conditions. Mechanistic studies employing stopped-flow diffuse reflectance FT-IR spectroscopy (DRIFTS) suggest that the high concentration of NO + generated by heterobimetallic zeolites is probably responsible for their superior low-temperature NO x activity.
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