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Chemoenzymatic Dynamic Kinetic Resolution of Primary Amines Using a Recyclable Palladium Nanoparticle Catalyst Together with Lipases

机译:使用可回收钯纳米颗粒催化剂与脂肪酶的伯胺化学酶动力学动力学拆分。

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摘要

A catalyst consisting of palladium nanoparticles supported on amino-functionalized siliceous mesocellular foam (Pd-AmP-MCF) was used in chemoenzymatic dynamic kinetic resolution (DKR) to convert primary amines to amides in high yields and excellent ee's. The efficiency of the nanocatalyst at temperatures below 70 degrees C enables reaction conditions that are more suitable for enzymes. In the present study, this is exemplified by subjecting 1-phenylethylamine (1a) and analogous benzylic amines to DKR reactions using two commercially available lipases, Novozyme-435 (Candida antartica Lipase B) and Amano Lipase PS-C1 (lipase from Burkholderia cepacia) as biocatalysts. The latter enzyme has not previously been used in the DKR of amines because of its low stability at temperatures over 60 degrees C. The viability of the heterogeneous Pd-AmP-MCF was further demonstrated in a recycling study, which shows that the catalyst can be reused up to five times.
机译:将由载于氨基官能化硅质介孔泡沫(Pd-AmP-MCF)上的钯纳米粒子组成的催化剂用于化学酶动力学动力学拆分(DKR),可将伯胺高产率地转化为酰胺。纳米催化剂在低于70℃的温度下的效率使得反应条件更适合于酶。在本研究中,这可以通过使用两种市售脂肪酶Novozyme-435(Cantida antartica脂肪酶B)和Amano脂肪酶PS-C1(来自洋葱伯克霍尔德氏菌的脂肪酶)对1-苯基乙胺(1a)和类似的苄基胺进行DKR反应来举例说明。作为生物催化剂。后者的酶以前在胺的DKR中尚未使用,因为它在60摄氏度以上的温度下稳定性低。在回收利用研究中进一步证明了非均相Pd-AmP-MCF的活力,表明该催化剂可以最多重复使用五次。

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