Beyond [ N ]Phenylenes: Synthesis and Investigation of Linear [4] and [5]Naphthylenes Incorporating Multiple Four‐Membered Rings

Ladder-type polycyclic conjugated hydrocarbons (PCHs) incorporating four-membered rings represent a unique class of organic materials with local antiaromaticity and dearomatization induced by the four-membered rings. [N]Phenylenes represent the only systematically synthesized series of PCHs containing multiple four-membered rings or biphenylene units. Linear [N]phenylenes become increasingly unstable as the conjugation length extends. Here, we report the regioselective synthesis of linear [4] and [5]naphthylenes, representing the longest PCHs containing multiple four-membered rings synthesized in solution to date. These structures were accessed through sequential catalytic arene oxanorbornene annulation reactions followed by aromatization. Raman spectroscopy and computation revealed significant dearomatization of naphthalenoid units and enhanced bond localization with increasing the conjugation length, contrasting with the typical bond delocalization trend in conventional conjugated molecules. These [N]naphthylenes exhibited high stability, markedly narrow blue emission profiles with very small Stokes shifts, high fluorescence quantum yields, as well as small shifts in the energy levels of frontier molecular orbitals upon increasing conjugation length. Skeletal flexibility was also observed in [4] and [5]naphthylene, but absent in [3]naphthylene, suggesting dynamic structural behaviors of longer [N]naphthylenes.

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Publication Details

Journal
Angewandte Chemie International Edition
Published
2026-09-05
DOI
https://doi.org/10.1002/anie.2086577
Primary Topic
Synthesis and Properties of Aromatic Compounds
Type
article
Field-Weighted Citation Impact
0.00

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article

Beyond [ N ]Phenylenes: Synthesis and Investigation of Linear [4] and [5]Naphthylenes Incorporating Multiple Four‐Membered Rings

Hirogi Yokochi, Pedro G. Boj, Juan Casado, María A. Díaz‐García et al.
Angewandte Chemie International Edition
Synthesis and Properties of Aromatic Compounds
article

Beyond [ N ]Phenylenes: Synthesis and Investigation of Linear [4] and [5]Naphthylenes Incorporating Multiple Four‐Membered Rings

Hirogi Yokochi, Pedro G. Boj, Juan Casado, María A. Díaz‐García, Ke Zheng, Abel Cárdenas Valdivia, Hideyuki Otsuka, Daniel Aranda, Yan Xia, Pablo Pasqués‐Gramage
article en

Abstract

Ladder-type polycyclic conjugated hydrocarbons (PCHs) incorporating four-membered rings represent a unique class of organic materials with local antiaromaticity and dearomatization induced by the four-membered rings. [N]Phenylenes represent the only systematically synthesized series of PCHs containing multiple four-membered rings or biphenylene units. Linear [N]phenylenes become increasingly unstable as the conjugation length extends. Here, we report the regioselective synthesis of linear [4] and [5]naphthylenes, representing the longest PCHs containing multiple four-membered rings synthesized in solution to date. These structures were accessed through sequential catalytic arene oxanorbornene annulation reactions followed by aromatization. Raman spectroscopy and computation revealed significant dearomatization of naphthalenoid units and enhanced bond localization with increasing the conjugation length, contrasting with the typical bond delocalization trend in conventional conjugated molecules. These [N]naphthylenes exhibited high stability, markedly narrow blue emission profiles with very small Stokes shifts, high fluorescence quantum yields, as well as small shifts in the energy levels of frontier molecular orbitals upon increasing conjugation length. Skeletal flexibility was also observed in [4] and [5]naphthylene, but absent in [3]naphthylene, suggesting dynamic structural behaviors of longer [N]naphthylenes.

Angewandte Chemie International Edition
University of Alicante (ES), Tokyo University of Science (JP), Universidad de Málaga (ES), Stanford University (US)
National Science Foundation, Universidad de Alicante, Ministerio de Ciencia, Innovación y Universidades, European Commission, Generalitat Valenciana, Junta de Andalucía, European Regional Development Fund, Division of Chemistry
Openalex Percentile: Top 20%
Synthesis and Properties of Aromatic Compounds
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