Original YGNF 有机合成 2024年07月16日 20:01
萃取是有机合成中几乎每天都用到的操作,最常用的萃取方式就是利用对产物溶解度好的有机溶剂将产物从水中萃取出来,比水密度小的乙酸乙酯和比水密度大的二氯甲烷是最常用的萃取溶剂。为了增加萃取效果可以在乙酸乙酯中加入少量四氢呋喃,在二氯甲烷中加入少量甲醇。或者更极端的情况,产物水溶性极好,可以先将水溶液加入氯化钠饱和,用乙腈或四氢呋喃萃取食盐饱和的水溶液。以上这些方法都只有一个目的,就是增加萃取溶剂对产物的溶解度,增强萃取效果。但是利用石油醚萃取听说过吗?只听说石油醚重结晶或打浆,没听说过用它萃取产物的。下面介绍一个石油醚萃取的应用,这里说的确实不是利用石油醚萃取产物,但它可以从DMF中萃取杂质。下面是一个非常常见的反应,碳酸钾当碱,在DMF中的取代反应。
此反应在反应液中,监测发现完全没有问题,由于反应速率可能较慢,而A原料假设是你做了很多步得到的中间体,于是你多加了一个当量的B,让A完全反应。然后就是常规操作,反应液倒入水中,有机溶剂萃取,水洗,加热浓缩。然后LCMS监测发现你的产物不见了,你收获了下面这个东西。
![](data:image/png;base64,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)
在你萃取后浓缩的过程中或者浓缩后处于NEAT无溶剂状态放置过程中,你的产物接着和剩余的一个当量的B反应生成了季铵盐。这种情况下,通常的解决办法就将B的当量数减少到一个当量或少于一个当量,回收底物A。有没有其他解决办法?能不能反应完后,先将底物B除掉?答案是有! 对于上面这种长链卤代烃,根据相似相容原理,石油醚对其溶解度肯定是大于大极性的DMF对其溶解度的。往期小编发布过【常用有机溶剂混溶表】,DMF和小极性的烷烃(如环己烷,正己烷,正庚烷)是不互溶的,不互溶就可以萃取,此类小极性溶剂石油醚最常见,后处理前,先用石油醚将DMF反应液萃取几遍,就可以完全除掉剩余的底物B,问题解决。此类非常规的萃取其实很多情况都可以用到,只是有时不是很有必要,就不用多此一举。如利用TBSCl保护羟基,常用的一个条件就是咪唑当碱,在DMF中反应,如果底物极性相对较大,就可以先用石油醚将TBSCl从反应液中萃取出来,避免后面柱层析时有味道很大的TBSCl【常见的羟基保护方法】。小编在【涉及有机锡试剂的后处理】中介绍过,对于三烷基氢化锡或其他小极性的有机锡试剂的除去,如果产物对甲醇或DMF溶解度较好,而三烷基氢化锡或其他小极性的有机锡试剂在石油醚或正己烷等小极性溶剂中溶解度较好,相似相容原理,反萃即可。先将反应液浓缩,加入甲醇或DMF溶解,石油醚即可萃取小极性有机锡试剂,鉴于有机锡的毒性,但此操作风险较大,谨慎操作。还有一种情况,油浴加热时,不小心瓶子被转子打破了,或者喷料了,产物和油浴混到了一起。要倒掉辛苦几步才得到的产物吗?不!还可以抢救一下!还是萃取,这次是用甲醇萃取加热油,这里小编当然不能说屡试不爽,因为小编不会经常失手的。萃取虽然常见,但还可以开发新应用,开动脑筋吧!打工人!