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Noncovalent Functionalization of 2D Black Phosphorus with Fluorescent Boronic Derivatives of Pyrene for Probing and Modulating the Interaction with Molecular Oxygen

机译:芘荧光硼态衍生物的2D黑色磷的非共价官能化探测和调节分子氧的相互作用

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摘要

We studied the chemical-physical nature of interactions involved in the formation of adducts of two-dimensional black phosphorus (2D BP) with organoboron derivatives of a conjugated fluorescent molecule (pyrene). Time-resolved fluorescence spectroscopy showed a stabilization effect of 2D BP on all derivatives, in particular for the adducts endowed with the boronic functionalities. Also, a stronger modulation of the fluorescence decay with oxygen was registered for one of the adducts compared to the corresponding organoboron derivative alone. Nuclear magnetic resonance experiments in suspension and density functional theory simulations confirmed that only noncovalent interactions were involved in the formation of the adducts. The energetic gain in their formation arises from the interaction of P atoms with both C atoms of the pyrene core and the B atom of the boronic functionalities, with a stronger contribution from the ester with respect to the acid one. The interaction results in the lowering of the band gap of 2D BP by around 0.10 eV. Furthermore, we demonstrated through Raman spectroscopy an increased stability toward oxidation in air of 2D BP in the adducts in the solid state (more than 6 months). The modification of the electronic structure at the interface between 2D BP and a conjugated organic molecule through noncovalent stabilizing interactions mediated by the B atom is particularly appealing in view of creating heterojunctions for optoelectronic, photonic, and chemical sensing applications.
机译:我们研究了与缀合的荧光分子(芘)的有机硼莫衍生物形成的二维黑磷(2D BP)的加合物形成的相互作用的化学物质性质。时间分辨荧光光谱显示出所有衍生物对所有衍生物的稳定效果,特别是对于耐候官能团的加合物。而且,与单独的有机硼衍生物相比,将荧光衰减与氧气的荧光衰减的更强调节被注册为其中一个加合物。悬浮和密度函数理论模拟中的核磁共振实验证实只有非共价相互作用涉及加合物的形成。它们的形成中的能量增益是由p原子与芘核的两个C原子的相互作用和静脉函数的B原子,从酯相对于酸性的贡献较强。相互作用导致将2D BP的带隙降低到大约0.10eV。此外,我们通过拉曼光谱证实了在固态的加合物中的2D BP中的空气中氧化增加了稳定性(超过6个月)。考虑到产生用于光电,光子和化学传感应用的异质结来,通过非价稳定相互作用的非共价稳定相互作用来改变2D BP和共轭有机分子的电子结构。

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