应用化学 ›› 2011, Vol. 28 ›› Issue (11): 1274-1279.DOI: 10.3724/SP.J.1095.2011.00688

• 研究论文 • 上一篇    下一篇

氨基硫脲分子钳的合成及对阴离子的识别作用

伍家卫1,2,唐荣萍1,索陇宁1,杨兴锴1,魏太保2,周艳青1,2*   

  1. (1.兰州石化职业技术学院石油化学工程系 兰州 730060;2.西北师范大学化学化工学院 兰州 730070)
  • 收稿日期:2010-11-18 修回日期:2011-01-11 出版日期:2011-11-10 发布日期:2011-11-10
  • 通讯作者: 周艳青,讲师; Tel:0931-7941121; Fax:0931-7941136; E-mail:zhouyanqing2005@126.com; 研究方向:精细有机合成及阴离子识别
  • 基金资助:
    国家自然科学基金(20671077)和甘肃省省属高校基本科研业务费资助项目甘财教(2009-192)

Synthesis of molecular Tweezers Based on thiosemi-Carbazide and their Anion Recognition Properties 

WU Jawei1,2, TANG Rongping1, SUO Longning1, YANG Xingkai1, WEI Taibao2, ZHOU Yanqing1,2*   

  1. (1.Department of Petrochemial Engineering,Lanzhou Petrochemical College of Vocational Technology, Lanzhou 730060;
    2.College of Chemistry and Chemical Engineering,Northwest Normal University,Lanzhou 730070)
  • Received:2010-11-18 Revised:2011-01-11 Published:2011-11-10 Online:2011-11-10
  • Contact: ZHOU Yanqing

摘要:

合成了2个新型氨基硫脲分子钳主体3a(1,3-二(o-甲苯氧乙酰氨基硫脲甲酰基)苯)和3b(1,3-二(p-甲苯氧乙酰氨基硫脲甲酰基)苯),利用UV-Vis和1H NMR测试其对F-、AcO-、Cl-、Br-和I-的阴离子识别性质。 结果表明,主体分子在DMSO溶液中对F-和AcO-表现出明显的选择性识别。 1H NMR光谱证明,主体分子与阴离子之间以氢键相结合,结合Job曲线得出主体分子与阴离子之间形成1∶1型氢键缔合物。 讨论了NH识别位点数及空间结构对识别性质的影响。 与硫脲对比,主体3a具有多个NH结合位点,可形成多个氢键,结合常数(Ks)更大。 与化合物3b相比,主体3a较大的空间位阻阻碍了其与阴离子的结合,因此两种主体分子与F-和AcO-结合常数均体现为Ks(F-)>Ks(AcO-)。

关键词: 分子钳, 氨基硫脲, 阴离子识别

Abstract:

Two novel molecular receptors based on thiosemicarbazide, compound 3a(1,3-bis(o-tolueneoxoacetylthiosemicarbazideacyl)benzene) and compound 3b(1,3-bis(p-tolueneoxoacetylthiosemicarbazideacyl)benzene), have been designed and synthesized under solid-liquid phase transfer catalysis conditions. The bindzsszzzing properties for anions such as F-, AcO-, Cl-, Br- and I- in DMSO have been examined by UV-Vis and 1H NMR spectroscopy. The results show a high selectivity for F- and AcO-, however, no obvious interaction was found for Cl-, Br-, and I-. The 1H NMR combined with Job curves indicates that a 1∶1 stoichiometry complex is formed between the receptors and the anions through hydrogen bonding interactions. In view of these results, the influences of the number of NH binding points and steric effect on binding properties were discussed. The receptor compound 3b can form much more hydrogen-bonding interactions due to the presence of many NH binding points, with larger association constant(Ks) than that of thiourea receptor. Compared compound 3a with 3b, large steric effect prevent the combination between compound 3a and anions. In terms of F- and AcO-, association constant of compound 3a and 3b followed the same tendency Ks(F-)>Ks(AcO-), owing to the better fit of size and shape between the receptors and F-.

Key words: molecular tweezers, thiosemicarbazide, anion recognition

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