期刊文献+

POCl_3-mediated H-bonding-directed one-pot synthesis of macrocyclic pentamers,strained hexamers and highly strained heptamers

POCl_3-mediated H-bonding-directed one-pot synthesis of macrocyclic pentamers,strained hexamers and highly strained heptamers
原文传递
导出
摘要 Previously we have shown that POCl3-mediated H-bonding-directed one-pot macrocyclization allows for the highly selective preparation of five-residue macrocycles as the predominant product with low yields of hexamers and an undetectable occurrence of both tetramers and heptamers.Replacing the interiorly arrayed methyl groups with ethyl groups in these 4-7 residue macrocycles alters the relative stability order among them.Specifically,ethoxy-substituted six-residue macrocycle,rather than pentamer,turns out to be computationally the most stable,suggesting that ethoxy-containing hexamer possibly can be formed as the major product under suitable conditions.We have investigated this possibility by varying reaction temperatures and concentrations,invariably affording pentamer as the major macrocycle with strained circular hexamers and highly strained circular heptamers produced in substantial amounts.This discrepancy can be reasonably explained on the basis of bimolecular reactions between two oligomers higher than monomers via kinetic simulations.In this scenario,the acyclic pentamer is kinetically "trapped" to undergo an intramolecular cyclization to yield circular pentamer,rather than to produce acyclic hexamer.As a result,acyclic hexamer precursor is generated largely from sterically demanding bimolecular reactions between a dimer and a tetramer,or between two trimers that are kinetically slower than the pentamer-producing chain-growth reactions.We additionally found that one-pot macrocyclization proceeds to the largest extent at 40 ℃,an intriguing finding that highlights the low reactivities of acid chloride and amine groups in these H-bond-enforced acyclic oligomeric intermediates. Previously we have shown that POCl3-mediated H-bonding-directed one-pot macrocyclization allows for the highly selective preparation of five-residue macrocycles as the predominant product with low yields of hexamers and an undetectable occurrence of both tetramers and heptamers.Replacing the interiorly arrayed methyl groups with ethyl groups in these 4-7 residue macrocycles alters the relative stability order among them.Specifically,ethoxy-substituted six-residue macrocycle,rather than pentamer,turns out to be computationally the most stable,suggesting that ethoxy-containing hexamer possibly can be formed as the major product under suitable conditions.We have investigated this possibility by varying reaction temperatures and concentrations,invariably affording pentamer as the major macrocycle with strained circular hexamers and highly strained circular heptamers produced in substantial amounts.This discrepancy can be reasonably explained on the basis of bimolecular reactions between two oligomers higher than monomers via kinetic simulations.In this scenario,the acyclic pentamer is kinetically "trapped" to undergo an intramolecular cyclization to yield circular pentamer,rather than to produce acyclic hexamer.As a result,acyclic hexamer precursor is generated largely from sterically demanding bimolecular reactions between a dimer and a tetramer,or between two trimers that are kinetically slower than the pentamer-producing chain-growth reactions.We additionally found that one-pot macrocyclization proceeds to the largest extent at 40 ℃,an intriguing finding that highlights the low reactivities of acid chloride and amine groups in these H-bond-enforced acyclic oligomeric intermediates.
出处 《Science China Chemistry》 SCIE EI CAS 2012年第1期55-63,共9页 中国科学(化学英文版)
基金 supports by A*STAR BMRC Research Consortia(R-143-000- 388-305 to H.Z.) Environment and Water Industry Development Council and Economic Development Board(SPORE,COY-15-EWI-RCFSA/N197-1 to H.Z.).
关键词 六聚体 氢键 导向 介导 分子内环化反应 双分子反应 动力学模拟 合成 supramolecular chemistry foldamer H-bond macrocycles one-pot synthesis POCl3
  • 相关文献

参考文献10

  • 1.Carried out by using mechanism-based kinetics simulator[]..
  • 2Ferguson JS,Yamato K,Liu R,He L,Zeng XC,Gong B.One-pot formation of large macrocycles with modifiable peripheries and internal cavities[].Angewandte Chemie International Edition.2009
  • 3Hui JKH,MacLachlan MJ.[6+6] Schiff-base macrocycles with 12 imines: Giant analogues of cyclohexane[].Chemical Communications.2006
  • 4Filarowski A,Koll A,Sobczyk L.Intramolecular hydrogen bonding in o-hydroxy Aryl Schiff Bases[].Current Organic Chemistry.2009
  • 5Yang LQ,Zhong LJ,Yamato K,Zhang XH,Feng W,Deng PC,Yuan LH,Zeng XC,Gong B.Aromatic oligoamide macrocycles from the bimolecular coupling of folded oligomeric precursors[].New Journal of Chemistry.2009
  • 6Li F,Gan Q,Xue L,Wang ZM,Jiang H.H-bonding directed one-step synthesis of novel macrocyclic peptides from ?-aminoquino- linecarboxylic acid[].Tetrahedron Letters.2009
  • 7Zhang AM,Han YH,Yamato K,Zeng XC,Gong B.Aromaticoligoureas: Enforced folding and assisted cyclization[].Organic Letters.2006
  • 8Yuan L,Feng W,Yamato K,Sanford AR,Xu D,Guo H,Gong B.Highly efficient, one-step macrocyclizations assisted by the folding and preorganiza- tion of precursor oligomers[].Journal of the American Chemical Society.2004
  • 9Ahn HC,Yun SM,Choi K.A proline-based macrocyclic amide with S-4 symmetry[].Chemistry Letters.2008
  • 10Jiang H,Leger JM,Guionneau P,Huc I.Strained aromatic oligoamide macrocycles as new molecular clips[].Organic Letters.2004

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部