Ghosh Priyanka, Ratha Radhakrishna, Shekhar Purohit Chandra
School of Chemical Sciences, National Institute of Science Education and Research (NISER), Jatni, Bhubaneswar, Odisha, 752050, India.
An OCC of Homi Bhabha National Institute (HBNI), Mumbai, 400 04.
Chem Asian J. 2024 Nov 4;19(21):e202400668. doi: 10.1002/asia.202400668. Epub 2024 Oct 17.
Synthesizing molecules with significant topological features, such as catenanes, tailored with specific groups to confer desired functionality, is essential for investigating various properties arising from the entanglement due to mechanical bonds. This investigation can pave the way for uncovering novel functional materials employing mechanically interlocked molecules (MIMs). In this direction, we have synthesized a π-donor (D) and π-acceptor (A) functionalized [2]catenane using a non-labile Co(III) metal ion as a template with pyridine-diamide templating center and utilizing click reaction for ring-closing. The donor group is a fluorene derivative, and the acceptor is a benzophenazine derivative, commonly employed in synthesizing conjugated polymers for various optoelectronic devices. Synthetically, the acceptor group was introduced into a macrocycle with a pyridine diamide unit. It was then threaded with a ligand having alkyne terminals to obtain the desired [2]pseudorotaxane utilizing cobalt ion as a template. Ring-closing was then performed with a di-azide functionalized molecule with the donor chromophore. The desired D-A functionalized [2]catenane was obtained after demetalation. All the starting materials, macrocycle, and entangled structures have been characterized by H-NMR, C-NMR, and mass spectroscopy. Some of these materials were also characterized by single-crystal X-ray analysis. The photophysical properties are studied by UV-visible and fluorescence spectroscopy.
合成具有重要拓扑特征的分子,如索烃,并通过特定基团进行修饰以赋予所需功能,对于研究由于机械键缠结而产生的各种性质至关重要。这项研究可为发现采用机械互锁分子(MIM)的新型功能材料铺平道路。在这个方向上,我们使用非不稳定的Co(III)金属离子作为模板,以吡啶二酰胺为模板中心,通过点击反应进行闭环,合成了一种π供体(D)和π受体(A)功能化的[2]索烃。供体基团是芴衍生物,受体是二苯并菲嗪衍生物,常用于合成各种光电器件的共轭聚合物。合成过程中,将受体基团引入到带有吡啶二酰胺单元的大环中。然后用具有炔端基的配体穿入,以钴离子为模板得到所需的[2]准轮烷。接着用带有供体发色团的双叠氮功能化分子进行闭环。脱金属后得到所需的D-A功能化[2]索烃。所有起始原料、大环和缠结结构均通过H-NMR、C-NMR和质谱进行了表征。其中一些材料还通过单晶X射线分析进行了表征。通过紫外可见光谱和荧光光谱研究了其光物理性质。