Coordination of Co2+ cations inside cavities of zeolite MFI with lattice oxygen and adsorbed ligands

被引:53
作者
El-Malki, EM [1 ]
Werst, D [1 ]
Doan, PE [1 ]
Sachtler, WMH [1 ]
机构
[1] Northwestern Univ, Dept Chem, Ctr Catalysis & Surface Sci, VN Ipatief Lab, Evanston, IL 60208 USA
关键词
D O I
10.1021/jp000540i
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The redox chemistry of Co ions in cavities of zeolite MFI has been studied in materials prepared by solid-state ion exchange and displaying Co/Al ratios varying from 0.4 to 1.0. Fourier Transform Infrared (FTIR) spectroscopy, electron spin resonance (ESR), and diffuse reflectance UV-visible spectroscopy were used to identify the oxidation state and the coordination of the Co ions. In the dehydrated blue material, Co2+ ions in cationic exchange sites strongly interact with the zeolite framework; their coordination symmetry is tetrahedral. ESR reveals that the ions are in their high-spin state, detectable only below 60 K; no ESR signal was detected at 77 K. However, adsorption of ammonia ligating to the Co2+ cations gives rise to an ESR signal at 77 K, indicating a strong reconfiguration of the electronic states. after coadsorption of oxygen and ammonia, ESR reveals the presence of two kinds of cobalt: Co2+ in a high-spin state at g = 5.1, detected at 77 K, and low-spin (Co3+LxO2-)(2+) adducts inside the zeolite cavities at g = 2.0, where L = NH3 and probably x less than or equal to 4. The (Co3+LxO2-)(2+) complexes are thought to be located inside the main channel intersections where a large number of ammonia ligands can be attached to a Co2+ ion. The high-spin Co2+ ions at g = 5.1 are assumed to be located in small cavities with five- and six-membered rings, and carry a smaller number of ammonia ligands.
引用
收藏
页码:5924 / 5931
页数:8
相关论文
共 34 条
[11]   AN INSITU FOURIER-TRANSFORM INFRARED STUDY OF ZEOLITIC VIBRATIONS - DEHYDRATION, DEAMMONIATION, AND REAMMONIATION OF ION-EXCHANGED Y-ZEOLITES [J].
JACOBS, WPJH ;
VANWOLPUT, JHMC ;
VANSANTEN, RA .
ZEOLITES, 1993, 13 (03) :170-182
[12]   IDENTIFICATION OF ZSM-TYPE AND OTHER 5-RING CONTAINING ZEOLITES BY IR SPECTROSCOPY [J].
JANSEN, JC ;
VANDERGAAG, FJ ;
VANBEKKUM, H .
ZEOLITES, 1984, 4 (04) :369-372
[13]  
KRAUSHAARCZARNETZKI B, 1991, STUD SURF SCI CATAL, V69, P231
[14]   AN INVESTIGATION OF FRAMEWORK SUBSTITUTION OF COBALT INTO ALUMINOPHOSPHATE-5 USING ELECTRON-SPIN-RESONANCE AND TEMPERATURE-PROGRAMMED DESORPTION MEASUREMENTS [J].
KURSHEV, V ;
KEVAN, L ;
PARILLO, DJ ;
PEREIRA, C ;
KOKOTAILO, GT ;
GORTE, RJ .
JOURNAL OF PHYSICAL CHEMISTRY, 1994, 98 (40) :10160-10166
[15]   IDENTIFICATION OF COPPER(II) AND COPPER(I) AND THEIR INTERCONVERSION IN CU/ZSM-5 DE-NOX CATALYSTS [J].
LEI, GD ;
ADELMAN, BJ ;
SARKANY, J ;
SACHTLER, WMH .
APPLIED CATALYSIS B-ENVIRONMENTAL, 1995, 5 (03) :245-256
[16]  
LEI GD, 1994, ZEOLITES, V14, P7
[17]  
LI Y, 1997, J CHEM SOC CHEM COMM, V20, P2013
[18]   CATALYTIC REDUCTION OF NITROGEN-OXIDES WITH METHANE IN THE PRESENCE OF EXCESS OXYGEN [J].
LI, YJ ;
ARMOR, JN .
APPLIED CATALYSIS B-ENVIRONMENTAL, 1992, 1 (04) :L31-L40
[19]   SELECTIVE CATALYTIC REDUCTION OF NOX WITH METHANE OVER METAL EXCHANGED ZEOLITES [J].
LI, YJ ;
ARMOR, JN .
APPLIED CATALYSIS B-ENVIRONMENTAL, 1993, 2 (2-3) :239-256
[20]   A reaction pathway for the ammoxidation of ethane and ethylene over Co-ZSM-5 catalyst [J].
Li, YJ ;
Armor, JN .
JOURNAL OF CATALYSIS, 1998, 176 (02) :495-502