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笼中的催化:SSZ-13 沸石中交换 Cu 阳离子的条件依赖性形态和动力学。

Catalysis in a Cage: Condition-Dependent Speciation and Dynamics of Exchanged Cu Cations in SSZ-13 Zeolites.

机构信息

Department of Chemical and Biomolecular Engineering, University of Notre Dame , 182 Fitzpatrick Hall, Notre Dame, Indiana 46556, United States.

School of Chemical Engineering, Purdue University , 480 Stadium Mall Drive, West Lafayette, Indiana 47907, United States.

出版信息

J Am Chem Soc. 2016 May 11;138(18):6028-48. doi: 10.1021/jacs.6b02651. Epub 2016 Apr 29.

DOI:10.1021/jacs.6b02651
PMID:27070199
Abstract

The relationships among the macroscopic compositional parameters of a Cu-exchanged SSZ-13 zeolite catalyst, the types and numbers of Cu active sites, and activity for the selective catalytic reduction (SCR) of NOx with NH3 are established through experimental interrogation and computational analysis of materials across the catalyst composition space. Density functional theory, stochastic models, and experimental characterizations demonstrate that within the synthesis protocols applied here and across Si:Al ratios, the volumetric density of six-membered-rings (6MR) containing two Al (2Al sites) is consistent with a random Al siting in the SSZ-13 lattice subject to Löwenstein's rule. Further, exchanged Cu(II) ions first populate these 2Al sites before populating remaining unpaired, or 1Al, sites as Cu(II)OH. These sites are distinguished and enumerated ex situ through vibrational and X-ray absorption spectroscopies (XAS) and chemical titrations. In situ and operando XAS follow Cu oxidation state and coordination environment as a function of environmental conditions including low-temperature (473 K) SCR catalysis and are rationalized through first-principles thermodynamics and ab initio molecular dynamics. Experiment and theory together reveal that the Cu sites respond sensitively to exposure conditions, and in particular that Cu species are solvated and mobilized by NH3 under SCR conditions. While Cu sites are spectroscopically and chemically distinct away from these conditions, they exhibit similar turnover rates, apparent activation energies and apparent reaction orders at the SCR conditions, even on zeolite frameworks other than SSZ13.

摘要

通过对跨越催化剂组成空间的材料进行实验探究和计算分析,确立了 Cu 交换 SSZ-13 沸石催化剂的宏观组成参数、Cu 活性位的类型和数量与 NH3 选择性催化还原(SCR)NOx 活性之间的关系。密度泛函理论、随机模型和实验特性表明,在所应用的合成方案内以及在不同的 Si:Al 比例下,含有两个 Al(2Al 位)的六元环(6MR)的体积密度与 SSZ-13 晶格中 Löwenstein 规则下的随机 Al 定位一致。此外,交换的 Cu(II)离子首先填充这些 2Al 位,然后填充剩余的未配对的 1Al 位,形成 Cu(II)OH。这些位点通过振动和 X 射线吸收光谱(XAS)和化学滴定实验在体外进行区分和计数。原位和操作条件下的 XAS 可以跟踪 Cu 氧化态和配位环境随环境条件的变化,包括低温(473 K)SCR 催化,并通过第一性原理热力学和从头算分子动力学进行解释。实验和理论共同揭示了 Cu 位对暴露条件的敏感响应,特别是在 SCR 条件下,Cu 物种被 NH3 溶剂化和迁移。虽然在这些条件之外,Cu 物种在光谱和化学上是不同的,但它们在 SCR 条件下表现出相似的周转速率、表观活化能和表观反应级数,即使在 SSZ13 以外的沸石骨架上也是如此。

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