Stereochemical inversion in difunctionalised pillar[5]arenes

被引:33
|
作者
Strutt, Nathan L. [1 ]
Schneebeli, Severin T. [1 ]
Stoddart, J. Fraser [1 ]
机构
[1] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA
基金
美国国家科学基金会;
关键词
dynamic NMR spectroscopy; molecular symmetry; pillararenes; stereochemical inversion; topic relationships; GUEST; HOST; COMPLEXATION; SOLVATION; MECHANICS; ENERGIES; N=5;
D O I
10.1080/10610278.2013.822973
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Pillar[5]arenes constitute a class of macrocycles which display planar chirality on account of the methylene bridges that link five disubstituted para-phenylene rings together. Dynamic H-1 NMR spectroscopy indicates that A1/A2-dihydroxypillar[5]arene undergoes conformational inversion between its enantiomers with an energy barrier of 11.9kcalmol(-1). This process involving an oxygen-through-the-annulus rotation by all five hydroquinone rings is associated with the breaking of two intramolecular hydrogen bonds between phenolic hydroxyl and methoxyl groups on neighbouring phenylene rings. A combination of molecular mechanics and quantum mechanical calculations reveals that the conformational inversion undergone by A1/A2-dihyroxypillar[5]arene involves the breaking of one of these hydrogen bonds in the rate-limiting step of the process. Not only does the calculated energy of activation (13.8kcalmol(-1)) using density functional theory agree well with the experimentally determined value (13.0 kcal mol(-1)), it also leads to the identification of the lowest energy pseudorotational pathway involving four intermediates and five transition states. While replacing the two hydroxyl groups in A1/A2-dihydroxypillar[5]arene with carbonyl groups leads to much more rapid conformational inversion, placing bromine atoms ortho to the two phenolic hydroxyl groups increases the strength of the intramolecular hydrogen bonds, raising the energy barrier to inversion by 3.9kcalmol(-1).
引用
收藏
页码:596 / 608
页数:13
相关论文
共 50 条
  • [1] Stereochemical inversion of pillar[5]arene. NMR and DFT studies
    Ermakova, Elena A.
    V. Ivanova, Anastasiya V.
    Kurbanov, Rauf Kh.
    Shurpik, Dmitriy N.
    Stoikov, Ivan I.
    Zuev, Yuriy F.
    Khairutdinov, Bulat I.
    JOURNAL OF MOLECULAR STRUCTURE, 2023, 1274
  • [2] Stereochemical Inversion of Rim-Differentiated Pillar[5]arene Molecular Swings
    Du, Ke
    Demay-Drouhard, Paul
    Samanta, Kushal
    Li, Shunshun
    Thikekar, Tushar Ulhas
    Wang, Haiying
    Guo, Minjie
    van Lagen, Barend
    Zuilhof, Han
    Sue, Andrew C-H
    JOURNAL OF ORGANIC CHEMISTRY, 2020, 85 (17): : 11368 - 11374
  • [3] "Clickable" pillar[5]arenes
    Ogoshi, Tomoki
    Shiga, Ryohei
    Hashizume, Masayoshi
    Yamagishi, Tada-aki
    CHEMICAL COMMUNICATIONS, 2011, 47 (24) : 6927 - 6929
  • [4] Temperature-driven chirality inversion of complexes of bromoalkyl-substituted pillar[5]arenes
    Liu, Chunhong
    Ji, Jiecheng
    Wu, Wanhua
    Yang, Cheng
    TETRAHEDRON LETTERS, 2023, 125
  • [5] Alignment and Dynamic Inversion of Planar Chirality in Pillar[n]arenes
    Kato, Kenichi
    Fa, Shixin
    Ogoshi, Tomoki
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62 (47)
  • [6] Radiation stability of alkylated pillar[5]arenes
    Geng, Junshan
    Wang, Ying
    Yang, Bin
    Yuan, Lihua
    Feng, Wen
    RADIATION PHYSICS AND CHEMISTRY, 2019, 161 : 1 - 8
  • [7] Monoaminophosphorylated pillar[5]arenes as hosts for alkaneamines
    Nazarova, A. A.
    Yakimova, L. S.
    Klochkov, V. V.
    Stoikov, I. I.
    NEW JOURNAL OF CHEMISTRY, 2017, 41 (04) : 1820 - 1826
  • [8] Synthesis and applications of conjugated pillar[5]arenes
    Dai, Xin-Yu
    Su, Qing-Ling
    Huang, Ting-Ting
    Liu, Juan
    Wei, Tai-Bao
    Yao, Hong
    Shi, Bingbing
    Lin, Qi
    TETRAHEDRON, 2024, 159
  • [9] Rim-differentiated pillar[5]arenes
    Lintao Wu
    Chun Han
    Xiaobi Jing
    Yong Yao
    ChineseChemicalLetters, 2021, 32 (11) : 3322 - 3330
  • [10] Rim-differentiated pillar[5]arenes
    Wu, Lintao
    Han, Chun
    Jing, Xiaobi
    Yao, Yong
    CHINESE CHEMICAL LETTERS, 2021, 32 (11) : 3322 - 3330