Electrospray ionization-mass spectrometry in the enantioselective hydrogenation of ethyl pyruvate catalyzed by dihydrocinchonidine modified Pt/Al2O3 in acetic acid

被引:69
作者
Bartók, M
Balázsik, K
Szöllösi, G
Bartók, T
机构
[1] Hungarian Acad Sci, Organ Catalysis Res Grp, H-6720 Szeged, Hungary
[2] Univ Szeged, Dept Organ Chem, H-6720 Szeged, Hungary
[3] Cereal Res Inst, Analyt Lab, H-6701 Szeged, Hungary
基金
匈牙利科学研究基金会;
关键词
hydrogenation; enantioselective; Pt/Al2O3; dihydrocinchonidine; ethyl pyruvate; ESI-MS; intermediate; oxonium cations;
D O I
10.1006/jcat.2001.3423
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 enantioselective hydrogenation of ethyl pyruvate (EtPy) on Pt-alumina (E 4759), Pt black, and Pt black + alumina (mixture) catalysts modified by dihydrocinchonidine (DHCD) in acetic acid was studied by clectrospray ionization-mass spectrometry (ESI-MS). Application of the ESI-MS technique led to the recognition of a novel-type compound, O+[Al(OAc)(2)](3) (oxonium ions). The effect of the DHCD concentration, temperature, and oxonium cations on the reaction rate and the enantioselectivity has been studied. Using the Engelhard 4759 catalyst in acetic acid under mild experimental conditions (room temperature, hydrogen pressure 1 bar, DHCD concentration 0.01 mM/L) an optical yield of 92% can be achieved. The high enantioselectivity is accompanied by the following turnovers: EtPy[DHCD > 43,000, EtPy/Pt-surface > 1000, TOF = 1-2 s(-1), and DHCD/Pt-surface ratio = 0.0072. The enantioselectivity reducing factor is identified by, ESI-MS as the gradual hydrogenation of the quinoline skeleton of DHCD that becomes more pronounced with increasing temperature and hydrogenation time. The discovery of oxonium cations, the extremely low, DHCD/Pt-surface ratio, and the new data obtained by the Pt black + alumina mixture made possible an interpretation of the mechanism of the heterogeneous enantioselective hydrogenation of alpha-ketoesters. (C) 2002 Elsevier Science.
引用
收藏
页码:168 / 176
页数:9
相关论文
共 65 条
[1]  
[Anonymous], 1995, CHIRAL REACTIONS HET
[2]   Enantioselective heterogeneous catalysis .2. Examination of the formation of the individual (R) and (S) lactates in the cinchonidine modified platinum hydrogenation of pyruvate [J].
Augustine, RL ;
Tanielyan, SK .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 1996, 112 (01) :93-104
[3]   A FACILE TECHNIQUE FOR THE SURFACE CHARACTERIZATION OF DISPERSED METAL-CATALYSTS [J].
AUGUSTINE, RL ;
WARNER, RW .
JOURNAL OF CATALYSIS, 1983, 80 (02) :358-368
[4]   ENANTIOSELECTIVE HETEROGENEOUS CATALYSIS .1. A WORKING MODEL FOR THE CATALYST-MODIFIER-SUBSTRATE INTERACTIONS IN CHIRAL PYRUVATE HYDROGENATIONS [J].
AUGUSTINE, RL ;
TANIELYAN, SK ;
DOYLE, LK .
TETRAHEDRON-ASYMMETRY, 1993, 4 (08) :1803-1827
[5]   Progress in asymmetric heterogeneous catalysis: Design of novel chirally modified platinum metal catalysts [J].
Baiker, A .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 1997, 115 (03) :473-493
[6]  
BAIKER A, 1997, HDB HETEROGENEOUS CA, V5, P2422
[7]   Rigid cinchona conformers in enantioselective catalytic reactions:: new cinchona-modified platinum catalysts in the Orito reaction [J].
Bartók, M ;
Felföldi, K ;
Szöllösi, G ;
Bartók, T .
CATALYSIS LETTERS, 1999, 61 (1-2) :1-5
[8]   A new cinchona-modified platinum catalyst for the enantioselective hydrogenation of pyruvate:: the structure of the 1:1 alkaloid-reactant complex [J].
Bartók, M ;
Felföldi, K ;
Török, B ;
Bartók, T .
CHEMICAL COMMUNICATIONS, 1998, (23) :2605-2606
[9]  
Bartók M, 2000, RAPID COMMUN MASS SP, V14, P509, DOI 10.1002/(SICI)1097-0231(20000331)14:6<509::AID-RCM902>3.0.CO
[10]  
2-P