Sánchez-Grande Ana, Urgel José I, Cahlík Aleš, Santos José, Edalatmanesh Shayan, Rodríguez-Sánchez Eider, Lauwaet Koen, Mutombo Pingo, Nachtigallová Dana, Nieman Reed, Lischka Hans, de la Torre Bruno, Miranda Rodolfo, Gröning Oliver, Martín Nazario, Jelínek Pavel, Écija David
IMDEA Nanoscience, C/ Faraday 9, Campus de Cantoblanco, 28049, Madrid, Spain.
Institute of Physics of the Czech Academy of Science, 16253, Praha, Czech Republic.
Angew Chem Int Ed Engl. 2020 Sep 28;59(40):17594-17599. doi: 10.1002/anie.202006276. Epub 2020 Aug 11.
We report on the synthesis and characterization of atomically precise one-dimensional diradical peripentacene polymers on a Au(111) surface. By means of high-resolution scanning probe microscopy complemented by theoretical simulations, we provide evidence of their magnetic properties, which arise from the presence of two unpaired spins at their termini. Additionally, we probe a transition of their magnetic properties related to the length of the polymer. Peripentacene dimers exhibit an antiferromagnetic (S=0) singlet ground state. They are characterized by singlet-triplet spin-flip inelastic excitations with an effective exchange coupling (J ) of 2.5 meV, whereas trimers and longer peripentacene polymers reveal a paramagnetic nature and feature Kondo fingerprints at each terminus due to the unpaired spin. Our work provides access to the precise fabrication of polymers featuring diradical character which are potentially useful in carbon-based optoelectronics and spintronics.
我们报道了在Au(111)表面上原子精确的一维双自由基并五苯聚合物的合成与表征。通过高分辨率扫描探针显微镜并辅以理论模拟,我们提供了其磁性能的证据,这些磁性能源于其末端存在两个未配对的自旋。此外,我们探究了与聚合物长度相关的磁性能转变。并五苯二聚体表现出反铁磁(S = 0)单重态基态。它们的特征是具有2.5 meV有效交换耦合(J)的单重态 - 三重态自旋翻转非弹性激发,而三聚体和更长的并五苯聚合物则呈现顺磁性质,并且由于未配对自旋在每个末端具有近藤指纹特征。我们的工作为精确制造具有双自由基特性的聚合物提供了途径,这些聚合物在碳基光电子学和自旋电子学中可能具有潜在用途。