Ghosh Arindam, Dash Syamasrit, Srinivasan A, Suresh Cherumuttathu H, Chandrashekar Tavarekere K
School of Chemical Sciences , National Institute of Science Education and Research (NISER) , HBNI , Bhubaneswar-752050 , Odisha , India . Email:
Inorganic and Theoretical Chemistry Section , Chemical Sciences and Technology Division , CSIR-National Institute of Interdisciplinary Science and Technology , Trivandrum-695019 , Kerala , India.
Chem Sci. 2019 May 15;10(23):5911-5919. doi: 10.1039/c9sc01633c. eCollection 2019 Jun 21.
Four different core-modified planar 34π octaphyrins (, , , and ) which exhibit rotational isomerism have been synthesized and characterized both in solution and solid states. Octaphyrins , and show two inseparable isomers and which crystallize in the same unit cell. However, forms two identical isomers of . Structurally, the two isomers in , and ( and ) are different only in the ring inversion of one of the thiophene or selenophene rings present in the terthiophene subunit of the macrocycle. In isomer , the middle thiophene or selenophene rings are inverted, while in isomer , the terminal thiophene rings are inverted. The H NMR spectrum of these macrocycles shows peaks assignable to protons of both the isomers in toluene D. The single crystal structure analysis of reveals the presence of both isomers and in a single unit cell with the 2/ space group. Both the isomers exhibit aromatic behaviour in the freebase form. Protonation of pyrrole nitrogens leads to exclusive formation of isomer for and . However, both the isomers are present upon protonation of where the central heterocyclic ring of terthiophene subunits has thiophene and selenophene rings. Octaphyrin crystallizes in the 2/ space group and exclusively isomer was formed in the reaction. Protonation of pyrrole nitrogens leads to significant increases in aromaticity as revealed by H NMR chemical shift data. The NICS values calculated for the individual heterocyclic rings before and after protonation support such a conclusion. The AICD plots exhibit clockwise orientation of current density vectors suggesting the presence of diatropic ring current in the octaphyrins. Energy calculations at the M06L/CC-pVTZ//M06L/6-31G** level qualitatively account for exclusive stabilization of a particular isomer relative to the other upon protonation. To the best of our knowledge represents the first example in expanded porphyrin chemistry where two different structural isomers crystallize in a single unit cell.
已合成了四种表现出旋转异构现象的不同核心修饰的平面34π八卟啉(、、和),并对其在溶液和固态下进行了表征。八卟啉、和显示出两种不可分离的异构体和,它们在同一晶胞中结晶。然而,形成了两个相同的异构体。从结构上看,、和中的两种异构体(和)仅在大环三联噻吩亚基中存在的一个噻吩或硒吩环的环反转方面有所不同。在异构体中,中间的噻吩或硒吩环反转,而在异构体中,末端的噻吩环反转。这些大环化合物的核磁共振氢谱显示在甲苯-d中可归属于两种异构体质子的峰。的单晶结构分析表明在具有2/空间群的单个晶胞中同时存在异构体和。两种异构体在游离碱形式下均表现出芳香行为。吡咯氮原子的质子化导致和专一地形成异构体。然而,当三联噻吩亚基的中心杂环具有噻吩和硒吩环时,质子化后两种异构体都存在。八卟啉在2/空间群中结晶,并且在反应中仅形成异构体。如核磁共振氢谱化学位移数据所示,吡咯氮原子的质子化导致芳香性显著增加。质子化前后各个杂环计算得到的NICS值支持这一结论。AICD图显示电流密度矢量呈顺时针方向,表明八卟啉中存在抗磁环电流。在M06L/CC-pVTZ//M06L/6-31G**水平上的能量计算定性地解释了质子化后一种特定异构体相对于另一种异构体的专一地稳定化。据我们所知,代表了扩展卟啉化学中的第一个例子,其中两种不同的结构异构体在单个晶胞中结晶。