Payne Daniel T, Webre Whitney A, Gobeze Habtom B, Seetharaman Sairaman, Matsushita Yoshitaka, Karr Paul A, Chahal Mandeep K, Labuta Jan, Jevasuwan Wipakorn, Fukata Naoki, Fossey John S, Ariga Katsuhiko, D'Souza Francis, Hill Jonathan P
International Center for Materials Nanoarchitectonics , National Institute for Materials Science , Namiki 1-1 , Tsukuba , Ibaraki 305-0044 , Japan . Email:
Department of Chemistry , University of North Texas , 1155 Union Circle , 305070 Denton , Texas 76203 , USA . Email:
Chem Sci. 2020 Feb 18;11(10):2614-2620. doi: 10.1039/d0sc00651c. eCollection 2020 Mar 14.
Singlet oxygen sensitization involving a class of hemiquinonoid-substituted resorcinarenes prepared from the corresponding 3,5-di--butyl-4-hydroxyphenyl-substituted resorcinarenes is reported. Based on variation in the molecular structures, quantum yields comparable with that of the well-known photosensitizing compound -tetraphenylporphyrin were obtained for the octabenzyloxy-substituted double hemiquinonoid resorcinarene reported herein. The following classes of compounds were studied: benzyloxy-substituted resorcinarenes, acetyloxy-substituted resorcinarenes and acetyloxy-substituted pyrogallarenes. Single crystal X-ray crystallographic analyses revealed structural variations in the compounds with conformation (, rctt, rccc, rcct) having some influence on the identity of hemiquinonoid product available. Multiplicity of hemiquinonoid group affects singlet oxygen quantum yield with those doubly substituted being more active than those containing a single hemiquinone. Compounds reported here lacking hemiquinonoid groups are inactive as photosensitizers. The term 'fuchsonarene' (fuchson + arene of resorcinarene) is proposed for use to classify the compounds.
报道了一类由相应的3,5-二叔丁基-4-羟基苯基取代的间苯二酚芳烃制备的半醌类取代间苯二酚芳烃的单线态氧敏化作用。基于分子结构的变化,本文报道的八苄氧基取代的双半醌间苯二酚芳烃获得了与著名的光敏化合物 - 四苯基卟啉相当的量子产率。研究了以下几类化合物:苄氧基取代的间苯二酚芳烃、乙酰氧基取代的间苯二酚芳烃和乙酰氧基取代的连苯三酚芳烃。单晶X射线晶体学分析揭示了化合物结构的变化,其构象(,rctt,rccc,rcct)对可得半醌类产物的特性有一定影响。半醌基团的多重性影响单线态氧量子产率,双取代的比含单个半醌的更具活性。本文报道的不含半醌基团的化合物作为光敏剂无活性。建议用术语“富氏芳烃”(富氏 + 间苯二酚芳烃的芳烃)对这些化合物进行分类。