Dipartimento di Scienze Chimiche, Università degli Studi di Padova, Via Marzolo 1, 35131 Padova, Italy.
Molecules. 2023 Mar 24;28(7):2917. doi: 10.3390/molecules28072917.
The conjugation of small-molecule semiconductors with self-assembling peptides is a powerful tool for the fabrication of supramolecular soft materials for organic electronics and bioelectronics. Herein, we introduced the benchmark organic semiconductor [1]benzothieno[3,2-b][1]-benzothiophene (BTBT) within the structure of a self-assembling amphipathic peptide. The molecular structure of the conjugate was rationally designed to favour π-π stacking between BTBT cores and π-delocalization within the self-assembled architectures. Hydrogels with fibrillar structure were obtained upon self-assembly. Spectroscopic studies confirmed that both hydrogen bonding between peptide segments and π-π stacking between BTBT chromophores are responsible for the formation of the 3D fibrillar network observed by transmission electron microscopy. The hydrogel was successfully deposited on gold interdigitated electrodes and a conductivity up to 1.6 (±0.1) × 10 S cm was measured.
小分子半导体与自组装肽的结合是制备用于有机电子学和生物电子学的超分子软材料的有力工具。在此,我们在自组装两亲肽的结构中引入了基准有机半导体[1]苯并[3,2-b][1]苯并噻吩(BTBT)。该共轭物的分子结构经过合理设计,有利于 BTBT 核之间的π-π堆积和自组装结构内的π离域。自组装得到具有纤维状结构的水凝胶。光谱研究证实,肽段之间的氢键和 BTBT 生色团之间的π-π堆积都有助于观察到的 3D 纤维状网络的形成,这是通过透射电子显微镜观察到的。水凝胶成功地沉积在金叉指电极上,并测量到高达 1.6(±0.1)×10 S cm 的电导率。