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首页> 外文期刊>Chemistry - A European Journal >Getting Ring-Closing Metathesis off the Bench: Reaction-Reactor Matching Transforms Metathesis Efficiency in the Assembly of Large Rings
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Getting Ring-Closing Metathesis off the Bench: Reaction-Reactor Matching Transforms Metathesis Efficiency in the Assembly of Large Rings

机译:摆脱闭环易位问题:反应-反应器匹配改变大环组装中的易位效率

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摘要

Reported is the first study of the influence of reactor configuration on the efficiency of a challenging ring-closing metathesis (RCM) reaction. With the intention of increasing the generality of RCM scaleup and reducing its dependence on substrate modification, macrocyclization of an unmodified, low effective-molarity diene was explored using different reactor types, in conjunction with a commercial, homogeneous Grubbs catalyst. Optimized performance is compared for a conventional batch reactor (BR), a continuous plug-flow reactor (PFR), and a continuous stirred-tank reactor (CSTR). In the PFR, maximum conversion is achieved most rapidly, but product yields and selectivity are adversely affected by co-entrapment of ethylene with the catalyst, substrate, and product in the traveling “plug”. Use of the CSTR, in which ethylene is efficiently swept out, affords an order-of-magnitude increase in total turnover numbers, and reduces the required catalyst loadings by 25× relative to the BR (to 0.2 mol %), while improving RCM yields and selectivity to quantitative levels. Continuous-flow methodologies that support liberation of the ethylene co-product thus show great promise for industrial uptake of RCM.
机译:报告是关于反应器配置对具有挑战性的闭环复分解(RCM)反应效率的影响的首次研究。为了增加RCM规模化的通用性并减少其对底物改性的依赖性,使用不同的反应器类型,结合市售的均相Grubbs催化剂,探索了未改性的,低有效分子量的二烯的大环化。比较了常规间歇式反应器(BR),连续活塞流反应器(PFR)和连续搅拌釜式反应器(CSTR)的最佳性能。在PFR中,最快地达到最大转化率,但是乙烯与催化剂,底物和产物在移动“塞子”中的共包埋会对产物的收率和选择性产生不利影响。使用有效清除乙烯的CSTR,可使总周转数增加一个数量级,并使所需的催化剂负载量相对于BR降低25倍(至0.2 mol%),同时提高RCM产量和定量水平的选择性。支持乙烯副产物释放的连续流方法论因此显示出工业上对RCM的应用前景。

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