Beijing Engineering Research Center of Printed Electronics Institution, Beijing Institute of Graphic Communication, Beijing 102600, China.
Nanjing Key Laboratory of Advanced Functional Materials, Nanjing Xiaozhuang University, Nanjing 211171, China.
Molecules. 2022 Nov 23;27(23):8165. doi: 10.3390/molecules27238165.
Herein, a simple approach for the fabrication of luminous self-assembled fibers based on halogen-bonded azopyridine complexes and oleic acid-modified quantum dots (QDs) is reported. The QDs uniformly align on the edge of the self-assembled fibers through the formation of van der Waals force between the alkyl chain of oleic acid on the QD surface and the alkyl chain of the halogen-bonded complexes, 15Br or 15I. Furthermore, the intermolecular interaction mechanism was elucidated by using Fourier-transform infrared spectroscopy (FTIR), Raman spectroscopy, and density functional theory (DFT) calculations. This approach results in retention of the fluorescence properties of the QDs in the fibers. In addition, the bromine-bonded fibers can be assembled into tailored directional fibers upon evaporation of the solvent (tetrahydrofuran) when using capillaries via the capillary force. Interestingly, the mesogenic properties of the halogen-bonded complexes are preserved in the easily prepared halogen-bonded fluorescent fibers; this provides new insight into the design of functional self-assembly materials.
本文报道了一种基于卤键合偶氮吡啶配合物和油酸修饰量子点(QDs)制备发光自组装纤维的简单方法。通过 QD 表面上油酸的烷基链与卤键合配合物 15Br 或 15I 的烷基链之间形成范德华力,QDs 在自组装纤维的边缘均匀排列。此外,通过傅里叶变换红外光谱(FTIR)、拉曼光谱和密度泛函理论(DFT)计算阐明了分子间相互作用机制。该方法使得纤维中 QDs 的荧光性质得以保留。此外,当使用毛细管通过毛细作用力将溶剂(四氢呋喃)蒸发时,溴键合纤维可以组装成定制的定向纤维。有趣的是,卤键合配合物的介晶性质在易于制备的卤键合荧光纤维中得以保留;这为功能性自组装材料的设计提供了新的见解。