PREPARATION AND CATALYTIC PROPERTIES OF NR4+-STABILIZED PALLADIUM COLLOIDS

被引:59
作者
BONNEMANN, H
BRINKMANN, R
NEITELER, P
机构
[1] Max-Planck-Institut für Kohlenforschung, Mulheim, D-45466
[2] Aral AG, Bochum, D-44789
关键词
PALLADIUM COLLOIDS; CATALYSIS; HYDROGENATION;
D O I
10.1002/aoc.590080410
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Palladium colloids revealing narrow particle size distributions can be obtained by chemical reduction using tetra-alkylammonium hydrotriorganoborates. Combining the stabilizing agent [NR4+] with the reducing agent [BEt3H-] provides a high concentration of the protecting group at the reduction centre. Alternatively, NR4X (X = halogen) may be coupled to the metal salt prior to the reduction step: addition of N(octyl)4Br to Pd(ac)2 in THF, for example, evokes an active interaction between the stabilizing agent and the metal salt. Reduction of NR4+-stabilized palladium salts with simple reducing agents such as hydrogen at room temperature yields stable palladium organosols which may be isolated in the form of redispersible powders. The anion of the palladium salt is crucial for the success of the colloid synthesis. Electron microscopy shows that the mean particle size ranges between 1.8 and 4.0 nm. An X-ray-photoelectron spectroscopic examination demonstrated the presence of zerovalent palladium. These palladium colloids may serve as both homogeneous and heterogeneous hydrogenation catalysts. Adsorption of the colloids onto industrially important supports can be achieved without agglomeration of palladium particles. The standard activity of a charcoal catalyst containing 5% of colloidal palladium determined through the cinnamic acid standard test was found to exceed considerably the activity of the conventional technical catalysts. In addition, the lifespan of the catalyst containing a palladium colloid, isolated from the reduction of [N(octyl)4]2PdCl2Br2 with hydrogen, is superior to conventionally prepared palladium/charcoal (Pd/C) catalysts. For example, the activity of a conventional Pd/C catalyst is completely suppressed after 38 X 10(3) catalytic cycles per Pd atom, whereas the colloidal Pd/C catalyst shows activity even after 96 x 10(3) catalytic cycles.
引用
收藏
页码:361 / 378
页数:18
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共 77 条
  • [1] BEHR A, 1991, ULLMANS ENCY IND CHE, V18, P215
  • [2] MECHANISM OF THE FORMATION OF PALLADIUM COMPLEXES SERVING AS CATALYSTS IN HYDROGENATION REACTIONS .1. REACTIONS OF COMPLEXES WITH MOLECULAR-HYDROGEN
    BERENBLYUM, AS
    KNIZHNIK, AG
    MUND, SL
    MOISEEV, II
    [J]. JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1982, 234 (02) : 219 - 235
  • [3] HYDROGENATION OF HIGHLY UNSATURATED-HYDROCARBONS OVER HIGHLY DISPERSED PD CATALYST .2. LIGAND EFFECT OF PIPERIDINE
    BOITIAUX, JP
    COSYNS, J
    VASUDEVAN, S
    [J]. APPLIED CATALYSIS, 1985, 15 (02): : 317 - 326
  • [4] HIGHLY DISPERSED METAL-CLUSTERS AND COLLOIDS FOR THE PREPARATION OF ACTIVE LIQUID-PHASE HYDROGENATION CATALYSTS
    BONNEMANN, H
    BRIJOUX, W
    BRINKMANN, R
    DINJUS, E
    FRETZEN, R
    JOUSSEN, T
    KORALL, B
    [J]. JOURNAL OF MOLECULAR CATALYSIS, 1992, 74 (1-3): : 323 - 333
  • [5] PREPARATION, CHARACTERIZATION, AND APPLICATION OF FINE METAL PARTICLES AND METAL COLLOIDS USING HYDROTRIORGANOBORATES
    BONNEMANN, H
    BRIJOUX, W
    BRINKMANN, R
    FRETZEN, R
    JOUSSEN, T
    KOPPLER, R
    KORALL, B
    NEITELER, P
    RICHTER, J
    [J]. JOURNAL OF MOLECULAR CATALYSIS, 1994, 86 (1-3): : 129 - 177
  • [6] ETHER-SOLUBLE TI(0) AND BIS(ETA-6-ARENE)TITANIUM(0) COMPLEXES FROM THE REDUCTION OF TICL4 WITH TRIETHYLHYDROBORATE
    BONNEMANN, H
    KORALL, B
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1992, 31 (11): : 1490 - 1492
  • [7] FORMATION OF COLLOIDAL TRANSITION-METALS IN ORGANIC PHASES AND THEIR APPLICATION IN CATALYSIS
    BONNEMANN, H
    BRIJOUX, W
    BRINKMANN, R
    DINJUS, E
    JOUSSEN, T
    KORALL, B
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION IN ENGLISH, 1991, 30 (10): : 1312 - 1314
  • [8] A GENERAL-APPROACH TO NR4-CIRCLE-PLUS-STABILIZED METAL COLLOIDS IN ORGANIC PHASES
    BONNEMANN, H
    BRINKMANN, R
    KOPPLER, R
    NEITELER, P
    RICHTER, J
    [J]. ADVANCED MATERIALS, 1992, 4 (12) : 804 - 806
  • [9] Bonnemann H., 1991, ANGEW CHEM, V103, P1344
  • [10] BONNEMANN H, 1991, Patent No. 4111719