Silica Nanopowder Supported Frustrated Lewis Pairs for CO2 Capture and Conversion to Formic Acid

被引:23
作者
Mentoor, Kgauhelo [1 ]
Twigge, Linette [1 ]
Niemantsverdriet, J. W. Hans [2 ]
Swarts, Jannie C. [1 ]
Erasmus, Elizabeth [1 ]
机构
[1] Univ Free State, Dept Chem, ZA-9300 Bloemfontein, South Africa
[2] Syngaschem BV, SynCat DIFFER, NL-5612 AJ Eindhoven, Netherlands
基金
新加坡国家研究基金会;
关键词
BETA-DIKETONATO COMPLEXES; ELECTRON-DENSITY; REDUCTION; METHANOL; BORANE; HYDROGENATION; ADSORPTION; REACTIVITY; CHEMISTRY; FORMALDEHYDE;
D O I
10.1021/acs.inorgchem.0c02012
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Treatment of hydroxylated silica nanopowders S1 and allyl-functionalized silica nanopowders S2 with 3-(diphenylborano)- or 3-bis (pentafluorophenylborano)propyltrimethoxysilane or 2-(diphenylphosphino)- or 2-(dicyclohexylphosphino)ethyltriethoxysilane generates silica nanopowder supported Lewis acids S3 and silica nanopowder supported Lewis bases S4. These surfaces were characterized by C-13, B-11, and P-31 cross-polarization magic angle spinning nuclear magnetic resonance (CP MAS NMR), X-ray photoelectron spectroscopy (XPS), and attenuated total reflection Fourier transform infrared (ATR FTIR). When S3 is combined with solution-phase Lewis bases PR3 (R = C6F5, C6H5, mesityl), six associated silica nanopowder supported frustrated Lewis pairs (FLPs) are formed. In another set of six reactions, the interactions between the supported Lewis bases S4 and solution-phase Lewis acids BR3 with R = C6F5, C6H5, mesityl produced six more associated supported FLPs. The capture of CO2 by these FLPs producing FLP-CO2 Lewis pair adducts SS and S6 were highlighted by ATR FTIR, and it was found that FLP S5e with R = C6H5 on both the supported Lewis acid and solution-phase Lewis base trapped the largest quantities of CO2 on the silica nanopowder supports. Conversion of CO2 to HCOOH was achieved by first activating H-2 to generate activated FLP-H-2 surfaces S7 and S9. Addition of CO2 then generated HCOOH via the silica nanopowder supported FLP-HCOOH adducts S8 and S10. Qualitative identification of HCOOH generation was achieved by ATR FTIR measurements, and surface 10b with R = C6H5 proved to be the most successful silica nanopowder surface bound FLP in HCOOH generation. In some cases, diborano formates (-BO(CH)OB-) S11 and S12 were also identified as side products during HCOOH formation. Spectroscopic characterization of purposefully synthesized S11 and S12 included B-11 and P-31 CP MAS NMR.
引用
收藏
页码:55 / 69
页数:15
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