Roy Chowdhury Srayoshi, Nandi Sujay Kumar, Mondal Sahabaj, Kumar Santosh, Haldar Debasish
Centre for Advance Functional Materials, Department of Chemical Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur 741246, India.
Polymers (Basel). 2021 Aug 17;13(16):2762. doi: 10.3390/polym13162762.
Supramolecular polymer formed by non-covalent interactions between complementary building blocks entraps solvents and develops supramolecular polymer gel. A supramolecular polymer gel was prepared by the heating-cooling cycle of -cyclodextrin (-CD) and naphthalenedimide (NDI) solution in N,N-dimethylformamide (DMF). The host-guest inclusion complex of -CD and NDI containing dodecyl amine forms the supramolecular polymer and gel in DMF. However, -CD and NDI having glutamic acid, fail to form the supramolecular polymer and gel under the same condition. X-ray crystallography shows that the alkyl chains of NDI are complementary to the hydrophobic cavity of the two -CD units. From rheology, the storage modulus was approximately 1.5 orders of magnitude larger than the loss modulus, which indicates the physical crosslink and elastic nature of the thermo-responsive gel. FE-SEM images of the supramolecular polymer gel exhibit flake-like morphology and a dense flake network. The flakes developed from the assembly of smaller rods. Photophysical studies show that the host-guest complex formation and gelation have significantly enhanced emission intensity with a new hump at 550 nm. Upon excitation by a 366 nm UV-light, NDI and -CD gel in DMF shows white light emission. The gel has the potential for the fabrication of organic electronic devices.
由互补结构单元之间的非共价相互作用形成的超分子聚合物会捕获溶剂并形成超分子聚合物凝胶。通过在N,N-二甲基甲酰胺(DMF)中对β-环糊精(β-CD)和萘二甲酰亚胺(NDI)溶液进行加热-冷却循环来制备超分子聚合物凝胶。含有十二烷基胺的β-CD和NDI的主客体包合物在DMF中形成超分子聚合物和凝胶。然而,含有谷氨酸的β-CD和NDI在相同条件下无法形成超分子聚合物和凝胶。X射线晶体学表明,NDI的烷基链与两个β-CD单元的疏水腔互补。流变学研究表明,储能模量比损耗模量大约1.5个数量级,这表明了热响应凝胶的物理交联和弹性性质。超分子聚合物凝胶的场发射扫描电子显微镜(FE-SEM)图像呈现出片状形态和致密的片状网络。这些薄片由较小的棒状组装体形成。光物理研究表明,主客体复合物的形成和凝胶化显著增强了发射强度,在550nm处出现一个新的峰。在366nm紫外光激发下,DMF中的NDI和β-CD凝胶发出白光。该凝胶具有用于制造有机电子器件的潜力。