Drechsel Carl, Li Chao, Liu Jung-Ching, Liu Xinyi, Häner Robert, Decurtins Silvio, Aschauer Ulrich, Liu Shi-Xia, Meyer Ernst, Pawlak Rémy
Department of Physics, WSS-Research Center for Molecular Quantum Systems, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland.
Department of Chemistry, Biochemistry and Pharmaceutical Sciences, W. Inäbnit Laboratory for Molecular Quantum Materials and WSS-Research Center for Molecular Quantum Systems, University of Bern, Freiestrasse 3, 3012 Bern, Switzerland.
Nanoscale Horiz. 2025 Aug 22. doi: 10.1039/d5nh00462d.
Precise control over the charge-state of radical molecules on surfaces is essential for engineering correlated electronic states in nanoscale architectures. Here, we demonstrate the supramolecular assembly of tetraazapyrene-based radicals on superconducting Pb(111), where anionic species formed through charge transfer from the substrate coexist with their neutral counterparts. These radicals can be discharged capacitive coupling with the local electric field of the scanning probe tip, producing peaks (dips) in tunneling (force) spectra. Spatial mapping further reveals cascade discharging events and electron correlation between adjacent molecules of the lattice. Through tip-induced debromination, we achieve irreversible discharge enabling the creation of defect patterns. Our results establish a pathway towards gate-tunable spin arrays with ultra-high areal density, leveraging charge-state control and emergent electron correlations in molecular assemblies.
精确控制表面自由基分子的电荷态对于在纳米级结构中设计相关电子态至关重要。在此,我们展示了基于四氮杂芘的自由基在超导Pb(111)上的超分子组装,其中通过从衬底电荷转移形成的阴离子物种与其中性对应物共存。这些自由基可以通过与扫描探针尖端的局部电场进行电容耦合而放电,在隧穿(力)谱中产生峰(谷)。空间映射进一步揭示了级联放电事件以及晶格中相邻分子之间的电子相关性。通过尖端诱导的脱溴作用,我们实现了不可逆放电,从而能够创建缺陷图案。我们的结果建立了一条通往具有超高面密度的栅极可调自旋阵列的途径,利用了分子组装中的电荷态控制和新兴的电子相关性。