A Pyrene-Embedded Molecular Nanotube with Donor–Acceptor Properties

Abstract Shape-persistent pyrene-embedded macrocycles remain scarce, and tubular conjugated molecules with intrinsic donor–acceptor (D–A) character have only recently emerged, largely within [n]cyclo-para-phenylene-based systems. Here we introduce a structurally distinct pyrene-containing nanotube (Pyr4), synthesized through a templated approach using an n-pentyl resorcin[4]arene, in which pyrene units and quinoxaline walls form an integrated D–A framework. Upon light excitation, Pyr4 displays behavior consistent with internal charge-transfer (ICT) between the pyrene donor (D) and the quinoxaline acceptor (A). The analogue with tolyl groups replacing pyrene (Tol4) shows markedly weaker D–A behavior. This assignment is supported by electrochemical studies, frontier molecular orbital analysis, and fluorescence solvatochromism, where emission shifts bathochromically by roughly 100 nm from 468 nm in hexane to 564 nm in DMSO. The fluorescence quantum yield (ϕf) falls with increasing solvent polarity, consistent with a stabilized charge-transfer state. In DCM, Pyr4 emits at 528 nm (ϕf = 0.2), red-shifted relative to previously reported pyrene-containing conjugated macrocycles.

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Publication Details

Journal
Precision Chemistry
Published
2026-09-21
DOI
https://doi.org/10.1021/prechem.6c00084
Primary Topic
Synthesis and Properties of Aromatic Compounds
Type
article
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article

A Pyrene-Embedded Molecular Nanotube with Donor–Acceptor Properties

Victor M. Espinoza Castro, M. Saeed Mirzaei, Saber Mirzaei, Marcelo F. Videa et al.
Precision Chemistry
Synthesis and Properties of Aromatic Compounds
article

A Pyrene-Embedded Molecular Nanotube with Donor–Acceptor Properties

Victor M. Espinoza Castro, M. Saeed Mirzaei, Saber Mirzaei, Marcelo F. Videa, Hormoz Khosravi, Raúl Hernández Sánchez
article en

Abstract

Abstract Shape-persistent pyrene-embedded macrocycles remain scarce, and tubular conjugated molecules with intrinsic donor–acceptor (D–A) character have only recently emerged, largely within [n]cyclo-para-phenylene-based systems. Here we introduce a structurally distinct pyrene-containing nanotube (Pyr4), synthesized through a templated approach using an n-pentyl resorcin[4]arene, in which pyrene units and quinoxaline walls form an integrated D–A framework. Upon light excitation, Pyr4 displays behavior consistent with internal charge-transfer (ICT) between the pyrene donor (D) and the quinoxaline acceptor (A). The analogue with tolyl groups replacing pyrene (Tol4) shows markedly weaker D–A behavior. This assignment is supported by electrochemical studies, frontier molecular orbital analysis, and fluorescence solvatochromism, where emission shifts bathochromically by roughly 100 nm from 468 nm in hexane to 564 nm in DMSO. The fluorescence quantum yield (ϕf) falls with increasing solvent polarity, consistent with a stabilized charge-transfer state. In DCM, Pyr4 emits at 528 nm (ϕf = 0.2), red-shifted relative to previously reported pyrene-containing conjugated macrocycles.

Precision Chemistry
Park University (US), Rice University (US), Tecnológico de Monterrey (MX)
Openalex Percentile: Top 21%
Synthesis and Properties of Aromatic Compounds
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A Pyrene-Embedded Molecular Nanotube with Donor–Acceptor Properties — Victor M. Espinoza Castro, M. Saeed Mirzaei, et al. · Precision Chemistry (2026) | TGRS Research Map | TGRS