首页> 外文期刊>Journal of combinatorial chemistry >Dendritic Aliphatic Polyethers as High-Loading Soluble Supports for Carbonyl Compounds and Parallel Membrane Separation Techniques
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Dendritic Aliphatic Polyethers as High-Loading Soluble Supports for Carbonyl Compounds and Parallel Membrane Separation Techniques

机译:树枝状脂肪族聚醚作为羰基化合物的高负载可溶性载体和平行膜分离技术

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This paper describes the use of dendritic polyglycerol as a new high-loading polymeric support. The soluble polyether skeleton allows the parallel synthesis of small libraries on a large scale (1-5 mmol). Purification of polymer-bound products is easily achieved by a parallel dialysis apparatus, which was developed to separate up to 12 reaction mixtures simultaneously. The terminal 1,2-diol groups of polyglycerol (loading capacity: 4.1 mmol diol/g) can be directly coupled with carbonyl compounds without additional linker groups. At the same time the polyglycerol support acts as a polymeric ketal protecting group. The coupling of the carbonyl compounds occurs in high yields, and effective loading capacities of up to 3.5 mmol of ketone/g can be reached. The obtained polymeric acetals can easily be characterized by standard analytical techniques, such as NMR, IR, UV, and SEC. The versatility of this new polymeric support for solution-phase organic synthesis is demonstrated by two efficient polymer-supported syntheses: nucleophilic substitutions of γ-chloroketones with amines and Suzuki-coupling on p-bromobenzaldehyde. The acidcatalyzed acetal cleavage with a solid-phase acidic ion-exchange resin in methanol demonstrates the orthogonal use of these soluble polymeric supports with conventional solid-phase reagents. Cleavage of products occurs in high yields, and almost complete recovery (>95%) of the polyglycerol support has been demonstrated after phase separation or ultrafiltration.
机译:本文介绍了树突状聚甘油作为新型高负载聚合物载体的用途。可溶性聚醚骨架允许大规模(1-5 mmol)并行合成小文库。通过平行渗析设备可轻松实现聚合物结合产物的纯化,该设备可同时分离多达12种反应混合物。聚甘油的末端1,2-二醇基团(负载量:4.1 mmol二醇/ g)可以直接与羰基化合物偶联,而无需其他连接基团。同时,聚甘油载体起聚合缩酮保护基的作用。羰基化合物的偶联以高收率发生,并且可以达到高达3.5 mmol / g的有效负载量。可以通过标准分析技术,例如NMR,IR,UV和SEC容易地表征所获得的聚合缩醛。两种有效的聚合物支持的合成方法证明了这种新型聚合物支持物在溶液相有机合成中的多功能性:γ-氯酮被胺类进行亲核取代,以及对溴苯甲醛上的Suzuki偶联。在甲醇中用固相酸性离子交换树脂进行的酸催化缩醛裂解表明,这些可溶性聚合物载体与常规固相试剂正交使​​用。产物的裂解以高收率进行,并且在相分离或超滤后已证明聚甘油载体几乎完全回收(> 95%)。

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