Daniele Poletto, Mauro Marongiu, David Hernández-Castillo, Rúben R Ferreira, Martina Crosta, Pradip Kumar Mondal, Leticia González, Davide Bonifazi
{"title":"BN/BO掺杂对梯形烯同系物激发态的调节。","authors":"Daniele Poletto, Mauro Marongiu, David Hernández-Castillo, Rúben R Ferreira, Martina Crosta, Pradip Kumar Mondal, Leticia González, Davide Bonifazi","doi":"10.1002/anie.202517114","DOIUrl":null,"url":null,"abstract":"<p><p>The rational design of polycyclic aromatic hydrocarbons that combine chemical and physical robustness with finely tuned optoelectronic properties remains a key challenge in materials science. As an initial step toward this goal, we report the synthesis and comprehensive characterization of a new class of boron-, nitrogen-, and oxygen-doped peri-acenoacenes, termed (2,5,4)-trapeziumene congeners. Analysis of these systems provides chemical descriptors that could guide the rational tailoring of their properties through peripheral doping. The target trapeziumene congeners were obtained via a sequence of Suzuki-Miyaura and Buchwald-Hartwig couplings, followed by directed borylation, giving both phenylborane and borinic derivatives with diverse peripheral doping sequences. Single-crystal X-ray diffraction revealed planar to slightly twisted backbones, with peripheral heteroatomic motifs that modulate π-conjugation and intermolecular packing. Photophysical studies showed bright fluorescence (Φ<sub>F</sub> up to 0.99), narrow Stokes shifts, and structured phosphorescence at 77 K. Electrochemical analysis demonstrated p-type behavior and a progressive HOMO-LUMO gap widening upon N→O substitution. Theoretical investigations revealed that N→O substitution asymmetrically affects the excited states, blue-shifting fluorescence while red-shifting phosphorescence, through an asymmetric charge stabilization in the S<sub>1</sub> and T<sub>1</sub> excited states. This is accompanied by a progressive widening of the T<sub>1</sub>-T<sub>2</sub> energy gap.</p>","PeriodicalId":520556,"journal":{"name":"Angewandte Chemie (International ed. in English)","volume":" ","pages":"e202517114"},"PeriodicalIF":16.9000,"publicationDate":"2025-09-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"BN/BO Doping of peri-Acenoacenes: Modulating Excited States in Trapeziumene Congeners.\",\"authors\":\"Daniele Poletto, Mauro Marongiu, David Hernández-Castillo, Rúben R Ferreira, Martina Crosta, Pradip Kumar Mondal, Leticia González, Davide Bonifazi\",\"doi\":\"10.1002/anie.202517114\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The rational design of polycyclic aromatic hydrocarbons that combine chemical and physical robustness with finely tuned optoelectronic properties remains a key challenge in materials science. As an initial step toward this goal, we report the synthesis and comprehensive characterization of a new class of boron-, nitrogen-, and oxygen-doped peri-acenoacenes, termed (2,5,4)-trapeziumene congeners. Analysis of these systems provides chemical descriptors that could guide the rational tailoring of their properties through peripheral doping. The target trapeziumene congeners were obtained via a sequence of Suzuki-Miyaura and Buchwald-Hartwig couplings, followed by directed borylation, giving both phenylborane and borinic derivatives with diverse peripheral doping sequences. Single-crystal X-ray diffraction revealed planar to slightly twisted backbones, with peripheral heteroatomic motifs that modulate π-conjugation and intermolecular packing. Photophysical studies showed bright fluorescence (Φ<sub>F</sub> up to 0.99), narrow Stokes shifts, and structured phosphorescence at 77 K. Electrochemical analysis demonstrated p-type behavior and a progressive HOMO-LUMO gap widening upon N→O substitution. Theoretical investigations revealed that N→O substitution asymmetrically affects the excited states, blue-shifting fluorescence while red-shifting phosphorescence, through an asymmetric charge stabilization in the S<sub>1</sub> and T<sub>1</sub> excited states. 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BN/BO Doping of peri-Acenoacenes: Modulating Excited States in Trapeziumene Congeners.
The rational design of polycyclic aromatic hydrocarbons that combine chemical and physical robustness with finely tuned optoelectronic properties remains a key challenge in materials science. As an initial step toward this goal, we report the synthesis and comprehensive characterization of a new class of boron-, nitrogen-, and oxygen-doped peri-acenoacenes, termed (2,5,4)-trapeziumene congeners. Analysis of these systems provides chemical descriptors that could guide the rational tailoring of their properties through peripheral doping. The target trapeziumene congeners were obtained via a sequence of Suzuki-Miyaura and Buchwald-Hartwig couplings, followed by directed borylation, giving both phenylborane and borinic derivatives with diverse peripheral doping sequences. Single-crystal X-ray diffraction revealed planar to slightly twisted backbones, with peripheral heteroatomic motifs that modulate π-conjugation and intermolecular packing. Photophysical studies showed bright fluorescence (ΦF up to 0.99), narrow Stokes shifts, and structured phosphorescence at 77 K. Electrochemical analysis demonstrated p-type behavior and a progressive HOMO-LUMO gap widening upon N→O substitution. Theoretical investigations revealed that N→O substitution asymmetrically affects the excited states, blue-shifting fluorescence while red-shifting phosphorescence, through an asymmetric charge stabilization in the S1 and T1 excited states. This is accompanied by a progressive widening of the T1-T2 energy gap.