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Lithium‐Catalyzed Thiol Alkylation with Tertiary and Secondary Alcohols: Synthesis of 3‐Sulfanyl‐Oxetanes as Bioisosteres

机译:锂催化的叔醇和仲醇的硫醇烷基化:合成3-氧杂环戊烷-氧杂环丁烷作为生物等排体

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摘要

3‐Sulfanyl‐oxetanes are presented as promising novel bioisosteric replacements for thioesters or benzyl sulfides. From oxetan‐3‐ols, a mild and inexpensive Li catalyst enables chemoselective C−OH activation and thiol alkylation. Oxetane sulfides are formed from various thiols providing novel motifs in new chemical space and specifically as bioisosteres for thioesters due to their similar shape and electronic properties. Under the same conditions, various π‐activated secondary and tertiary alcohols are also successful. Derivatization of the oxetane sulfide linker provides further novel oxetane classes and building blocks. Comparisons of key physicochemical properties of the oxetane compounds to selected carbonyl and methylene analogues indicate that these motifs are suitable for incorporation into drug discovery efforts.
机译:3-硫烷基-氧杂环丁烷被认为是硫代酯或苄基硫醚的有前途的新型生物等位替代物。从oxetan-3-ols中,温和且便宜的Li催化剂可实现化学选择性的C-OH活化和硫醇烷基化。氧杂环丁烷硫化物是由各种硫醇形成的,它们在新的化学空间中提供了新颖的图案,并且由于其相似的形状和电子特性而特别用作硫酯的生物等排体。在相同条件下,各种π活化的仲和叔醇也很成功。氧杂环丁烷硫化物接头的衍生化提供了进一步的新颖的氧杂环丁烷类别和结构单元。氧杂环丁烷化合物与选定的羰基和亚甲基类似物的关键物理化学性质的比较表明,这些基序适合用于药物开发。

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