Zhao Huiling, Yang Qian, Wang Zegao, Zhao Hang, Liu Bo, Chen Qianming, Dong Mingdong
School of Physics and Electronics, Henan University, Kaifeng, China.
Interdisciplinary Nanoscience Centre (iNANO), Sino-Danish Center for Education and Research (SDC), Aarhus University, Aarhus, Denmark.
Front Chem. 2019 Jul 25;7:513. doi: 10.3389/fchem.2019.00513. eCollection 2019.
Designing and fabricating hetero-complexes composed of organic and biological compounds had become an exciting area referring to biological recognition, molecular devices etc. Here, hydrogen-bonded complex of nucleic-acid-base (adenine, A) and fatty-acid (stearic acid, SA) was designed, fabricated and investigated at liquid/solid interface. The interesting striped-shaped structure composed of SA-A-SA trimers was formed after introducing adenine molecules. Meanwhile, the primary lamella-shape characteristic of the assembly of SA molecules was kept because of the collaboration of non-covalent interactions of molecule-molecule and molecule-substrate. With a series of experimental characterization and theoretical simulation, the origination of the as-prepared 2D hetero-complexes was gradually exhibited from the assembled structures of two building blocks of stearic acid and adenine. Our study provides a blueprint for designing additional multi-component complexes based on the existing molecular assembled architectures.
设计和制造由有机和生物化合物组成的杂化复合物已成为一个涉及生物识别、分子器件等领域的令人兴奋的研究方向。在此,我们在液/固界面设计、制备并研究了核酸碱基(腺嘌呤,A)与脂肪酸(硬脂酸,SA)形成的氢键复合物。引入腺嘌呤分子后,形成了由SA-A-SA三聚体组成的有趣的条纹状结构。同时,由于分子间和分子-基底非共价相互作用的协同作用,SA分子组装体的初级片层形状特征得以保留。通过一系列实验表征和理论模拟,由硬脂酸和腺嘌呤两种结构单元组装而成的二维杂化复合物的形成过程逐渐清晰。我们的研究为基于现有分子组装结构设计更多多组分复合物提供了蓝图。