首页> 外文期刊>Journal of the Chilean Chemical Society >Effect of the nature of the support on the enantioselective hydrogenation of 1-phenyl-1,2-propanedione over supported iridium catalysts.
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Effect of the nature of the support on the enantioselective hydrogenation of 1-phenyl-1,2-propanedione over supported iridium catalysts.

机译:载体性质对负载铱催化剂上1-苯基-1,2-丙二酮对映选择性氢化的影响。

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The enantioselective hydrogenation of 1-phenyl-1,2-propanedione at 298 K and 40 bar over modified supported iridium catalysts has been studied. Cinchonidine has been used as chiral inducer. The catalysts were obtained by impregnation of Ir(acac)(3) on three different supports: SiO2, TiO2 and MoO3, followed by calcination in air and reduction under hydrogen at 773 K. All the solids were characterized by nitrogen adsorption-desorption isotherms at 77 K, H-2 chemisorption, XRD, TEM, TPR and XPS. It was found that Ir/SiO2 and Ir/TiO2 catalysts reduced at high temperatures, 773 K, possess similar metal particle size, close to 2.0 nm, eventhough the H/Ir ratio obtained from H, chemisorption showed larger differences, with the H/Ir ratio being lower for titania- and molybdenum-supported iridium catalysts. In these samples, migration of the partially reduced supports, TiOx and MoOx moieties, on the metal crystals induce the creation of Ir delta+ species. TPR and XPS results confirmed that the metal component was not completely reduced.The activity was influenced by the nature of the support, being more active those in the SMSI state such as Ir/TiO2 and Ir/MoO3 being more active. This has been attributed to the presence of electron deficient metal species, Ir delta+, which are responsible for the polarization of the carbonyl bond of the substrates, thus favoring the activity and enantioselectivity of the reaction. The effect of different solvents on the activity and the enantioselectivity of the reaction was also studied. The highest enantiomeric excess (ee) of (R)-1-phenyl-1-hydroxy-2-propanone (20%) was obtained with the Ir/TiO2 catalyst using acetic acid as solvent.
机译:研究了在改性负载型铱催化剂上于298 K和40 bar下对1-苯基-1,2-丙二酮的对映选择性氢化。辛可尼定已被用作手性诱导剂。催化剂通过将Ir(acac)(3)浸渍在SiO2,TiO2和MoO3三种不同的载体上,然后在空气中煅烧并在773 K的氢气下还原而获得。所有固体的特征在于,氮的吸附-解吸等温线77 K,H-2化学吸附,XRD,TEM,TPR和XPS。发现在773 K的高温下还原的Ir / SiO2和Ir / TiO2催化剂具有相似的金属粒径,接近2.0 nm,即使由H获得的H / Ir比,化学吸附显示较大的差异,H /对于钛和钼负载的铱催化剂,Ir比较低。在这些样品中,部分还原的载体TiOx和MoOx部分在金属晶体上的迁移诱导了Ir delta +物种的产生。 TPR和XPS结果证实金属组分并未完全还原。活性受载体性质的影响,在SMSI状态下的活性更高,例如Ir / TiO2和Ir / MoO3更高。这归因于存在电子不足的金属种类Ir delta +,它们负责使底物的羰基键极化,因此有利于反应的活性和对映选择性。还研究了不同溶剂对反应活性和对映选择性的影响。使用乙酸作为溶剂的Ir / TiO2催化剂获得(R)-1-苯基-1-羟基-2-丙酮的最高对映体过量(ee)(20%)。

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