Direct synthesis of dimethyl carbonate with supercritical carbon dioxide: Characterization of a key organotin oxide intermediate

被引:124
作者
Ballivet-Tkatchenko, Danielle
Chambrey, Stephane
Keiski, Riitta
Ligabue, Rosane
Plasseraud, Laurent
Richard, Philippe
Turunen, Helka
机构
[1] Univ Bourgogne, CNRS, UMR 5188, LSEO, F-21078 Dijon, France
[2] Univ Oulu, Dept Proc & Environm Engn, Oulu 90014, Finland
关键词
dimethyl carbonate; dibutyldimethoxystannane; organotin oxide; supercritical carbon dioxide; carbon dioxide-methanol phase diagrams;
D O I
10.1016/j.cattod.2006.02.025
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
The direct synthesis of dimethyl carbonate (DMC) using carbon dioxide as solvent and reagent for its fixation to methanol was explored with di-n-butyldimethoxystannane in order to get insight into the reaction mechanism for activity improvement. Catalytic runs including recycling experiments allowed isolation and characterization by NMR, IR, and single-crystal X-ray diffraction of a new tin complex containing 10 tin atoms. This compound could be prepared independently and is considered as a resting species. The yield of DMC is highest under 20 MPa pressure that fits with a monophasic supercritical medium in agreement with fluid phase equilibria calculations. In line, preliminary kinetics and initial rate determination show a positive order in carbon dioxide and a first-order dependence on the stannane. The initial rates were lower with the deca-tin complex than with the stannane precursor, but the turnover numbers (TONs) were higher. Water, the co-product of the reaction, was found to reversibly poison the active centers. Its in situ trapping had a beneficial effect. This study provides new mechanistic clues as to the reactive species and DMC formation. Further kinetics work is in progress to determine the rate-limiting step(s) at the initial stage of the reaction for more active catalyst design. (c) 2006 Elsevier B.V. All rights reserved.
引用
收藏
页码:80 / 87
页数:8
相关论文
共 53 条
[41]  
SNPE, 1973, Patent No. 2163884
[42]   EQUILIBRIUM CONSTANTS FROM A MODIFIED REDLICH-KWONG EQUATION OF STATE [J].
SOAVE, G .
CHEMICAL ENGINEERING SCIENCE, 1972, 27 (06) :1197-&
[43]   A cartridge system for organometallic catalysis: Sequential catalysis and separation using supercritical carbon dioxide to switch phases [J].
Solinas, M ;
Jiang, JY ;
Stelzer, O ;
Leitner, W .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (15) :2291-2295
[44]   A novel method of direct synthesis of dimethyl carbonate from methanol and carbon dioxide catalyzed by zirconia [J].
Tomishige, K ;
Sakaihori, T ;
Ikeda, Y ;
Fujimoto, K .
CATALYSIS LETTERS, 1999, 58 (04) :225-229
[45]   ATOM ECONOMY - A CHALLENGE FOR ORGANIC-SYNTHESIS - HOMOGENEOUS CATALYSIS LEADS THE WAY [J].
TROST, BM .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 1995, 34 (03) :259-281
[46]   The chemistry of dimethyl carbonate [J].
Tundo, P ;
Selva, M .
ACCOUNTS OF CHEMICAL RESEARCH, 2002, 35 (09) :706-716
[47]  
TURUNEN H, 2004, P INT C EC EFF SUST
[48]   Oxidative reactions by a palladium-alkyl nitrite system [J].
Uchiumi, S ;
Ataka, K ;
Matsuzaki, T .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1999, 576 (1-2) :279-289
[49]   The state of the cubic equations of state [J].
Valderrama, JO .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2003, 42 (08) :1603-1618
[50]  
WAGNER A, 1994, Patent No. 4310109