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van der Waals-induced chromatic shifts in hydrogen-bonded two-dimensional porphyrin arrays on boron nitride

机译:范德华在氮化硼上氢键键合二维卟啉阵列中的色移

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摘要

The fluorescence of a two-dimensional supramolecular network of 5,10,15,20-tetrakis(4-carboxylphenyl)porphyrin (TCPP) adsorbed on hexagonal boron nitride (hBN) is red shifted due to, primarily, adsorbate–substrate van der Waals interactions. TCPP is deposited from solution on hBN and forms faceted islands with typical dimensions of 100 nm and either square or hexagonal symmetry. The molecular arrangement is stabilized by in-plane hydrogen bonding as determined by a combination of molecular resolution atomic force microscopy performed under ambient conditions and density functional theory; a similar structure is observed on MoS2 and graphite. The fluorescence spectra of submonolayers of TCPP on hBN are red-shifted by ∼30 nm due to the distortion of the molecule arising from van der Waals interactions, in agreement with time-dependent density functional theory calculations. Fluorescence intensity variations are observed due to coherent partial reflections at the hBN interface, implying that such hybrid structures have potential in photonic applications.
机译:吸附在六方氮化硼(hBN)上的5,10,15,20-四(4-羧基苯基)卟啉(TCPP)的二维超分子网络的荧光发生红移,这主要是由于被吸附物-底物范德华互动。 TCPP从溶液中沉积在hBN上,形成典型尺寸为100 nm且呈方形或六边形对称的刻面岛。通过在环境条件下进行的分子分辨率原子力显微镜和密度泛函理论的结合确定的面内氢键来稳定分子排列。在MoS2和石墨上观察到类似的结构。与范围随时间变化的密度泛函理论计算结果一致,由于范德华相互作用引起的分子变形,hBN上TCPP的亚单分子层的荧光光谱红移了约30 nm。由于hBN界面处的相干部分反射,观察到了荧光强度变化,这表明这种杂化结构在光子应用中具有潜力。

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