首页> 外文期刊>Journal of the American Chemical Society >Photomodulation Of Ionic Interaction And Reactivity: Reversible Photoconversion Between Imidazolium Andrnimidazolinium
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Photomodulation Of Ionic Interaction And Reactivity: Reversible Photoconversion Between Imidazolium Andrnimidazolinium

机译:离子相互作用和反应性的光调节:咪唑鎓咪唑啉之间的可逆光转化

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An interconversion system between imidazolium and imidazolinium has been proposed for the first time. Imidazolium and imidazolinium cations exhibit different reactivity due to the difference in the aromaticity and charge localization structure, which is successfully controlled by means of photoirradiation in the present system. A 4,5-dithiazolylimidazolium salt was prepared and studied as a new class of photochromic materials modulating electrostatic interactions and chemical reactivities. The photochromic 4,5-dithiazolylimidazolium showed reversible photoconversions between imidazolium open-form and imidazolinium closed-form upon successive irradiation with UV and visible light. The imidazolinium closed-form exhibited characteristic solvato- and ionochromisms in which the absorption maximum shifted by more than 80 nm depending on the solvent polarity and counteranions, whereas the imidazolium open-form showed no such solvent-dependent property. Because the corresponding nonionic 4,5-dithiazolylimidazole also did not exhibit the solvent-dependent absorption profile both in open- and closed-forms, the appearance of these chromisms in imidazolinium closed-form was attributed to the change in the extent of ionic interaction, which was brought about by the photoconversion of imidazolium to imidazolinium. The photoderived strong ionic interaction of imidazolinium with counteranion was further applied to the photocontrolled nucleophilic reaction system. Whereas the imidazolium open-form was inert to nucleophiles such as sodium methoxide, the imidazolinium closed-form was reactive to the nucleophilic reaction, demonstrating a photogated reaction system.
机译:首次提出了咪唑鎓和咪唑啉鎓之间的互变系统。咪唑鎓和咪唑啉鎓阳离子由于芳香性和电荷定位结构的不同而表现出不同的反应性,这在本系统中通过光辐照成功地控制了。制备了4,5-二噻唑基咪唑鎓盐,并将其作为调节静电相互作用和化学反应性的新型光致变色材料进行研究。光致变色的4,5-二噻唑基咪唑鎓在连续用紫外线和可见光照射后,在咪唑鎓开放形式和咪唑啉鎓封闭形式之间显示出可逆的光转化。咪唑啉鎓闭合形式表现出特征的溶剂变色和离子变色现象,其中最大吸收取决于溶剂极性和抗衡阴离子而移动超过80 nm,而咪唑鎓开放形式则没有这种溶剂依赖性。由于相应的非离子4,5-二噻唑并咪唑在开环和闭环形式下均不表现出溶剂依赖性的吸收曲线,因此咪唑啉鎓闭环形式的这些变色现象的出现归因于离子相互作用程度的变化,这是由咪唑鎓向咪唑啉鎓的光转化所引起的。咪唑啉与抗衡阴离子的光衍生强离子相互作用进一步应用于光控亲核反应体系。咪唑鎓开放形式对亲核试剂如甲醇钠呈惰性,而咪唑啉鎓封闭形式对亲核反应具有反应性,表明存在光门化反应体系。

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