Yao Ze-Fan, Cordova Dmitri Leo Mesoza, Milligan Griffin M, Lopez Diana, Allison Steven Jay, Kuang Yuyao, Ardoña Herdeline Ann M, Arguilla Maxx Q
Department of Chemical and Biomolecular Engineering, Samueli School of Engineering, University of California, Irvine, CA 92697, USA.
Department of Chemistry, School of Physical Sciences, University of California, Irvine, CA 92697, USA.
Sci Adv. 2024 Jun 14;10(24):eadl2402. doi: 10.1126/sciadv.adl2402. Epub 2024 Jun 12.
The deployment of organic molecules in high-performance devices strongly relies on the formation of well-ordered domains, which is often complicated by the dynamic and sensitive nature of supramolecular interactions. Here, we engineered the assembly of water-processable, optoelectronic π-conjugated peptides into well-defined organic-inorganic heterointerfaced assemblies by leveraging the long-range anisotropic ordering of 1D van der Waals (vdW) crystals composed of subnanometer-thick transition metal sulfide chains (MS; M = Nb, Ta) as assembly templates. We found that the monomers can readily form 1D supramolecular assemblies onto the underlying crystal surface, owing to the structural correspondence between the π-π interactions of the quaterthiophene (4T)-based peptide units (DDD-4T) and sulfur atom ordering along the NbS (100) surface. The heterointerfaced assemblies exhibited substantially red-shifted photoluminescence and enhanced visible-range photocurrent generation compared to solution-assembled films. Our results underscore the role of lattice matching in forming ordered supramolecular assemblies, offering an emergent approach to assembling organic building blocks endowed with improved physical properties.
高性能器件中有机分子的部署强烈依赖于有序域的形成,而这常常因超分子相互作用的动态和敏感性质而变得复杂。在此,我们通过利用由亚纳米厚的过渡金属硫化物链(MS;M = Nb、Ta)组成的一维范德华(vdW)晶体的长程各向异性有序排列作为组装模板,将可水加工的光电π共轭肽组装成明确的有机-无机异质界面组装体。我们发现,由于基于四噻吩(4T)的肽单元(DDD-4T)的π-π相互作用与沿NbS(100)表面的硫原子有序排列之间的结构对应性,单体能够很容易地在底层晶体表面形成一维超分子组装体。与溶液组装的薄膜相比,异质界面组装体表现出显著红移的光致发光和增强的可见光范围光电流产生。我们的结果强调了晶格匹配在形成有序超分子组装体中的作用,为组装具有改善物理性质的有机构建块提供了一种新方法。