Tandem Synthesis and Photophysical Behavior of Pyrazolo[3,4‐ h ][1,6]naphthyridines: A Theoretical–Experimental Approach

A microwave‐assisted tandem synthesis of pyrazolo[3,4‐ h ][1,6]naphthyridines bearing substituents with diverse stereoelectronic character (i.e., alkyl, aryl, CN, and MeO) is reported. Products were obtained in good yields by reacting 5‐aroyl‐pyrazolo[3,4‐ b ]pyridines with malononitrile in methanol, where the expected Knoevenagel reaction does not proceed. Instead, a solvent molecule drives a tandem reaction that affords three tricyclic N ‐heteroaromatic compounds. Their molecular architecture prompted us to explore their photophysics, including solvatofluorochromism and aggregation properties. The 4‐methoxyphenyl‐substituted derivative exhibited the best behavior ( ɸ F up to 62%, with up to 80% water tolerance) due to intramolecular charge transfer within the π ‐extended tricyclic core; this process is notably attenuated or enhanced by the aryl substituent. Density functional theory calculations were used to interpret the experimental results, establish a mechanism for product formation, and correlate the structural and spectroscopic properties of the three synthesized tricyclic compounds.

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Publication Details

Journal
European Journal of Organic Chemistry
Published
2026-09-28
DOI
https://doi.org/10.1002/ejoc.70874
Primary Topic
Multicomponent Synthesis of Heterocycles
Type
article
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article

Tandem Synthesis and Photophysical Behavior of Pyrazolo[3,4‐ h ][1,6]naphthyridines: A Theoretical–Experimental Approach

Jaime Portilla, Carlos Cifuentes, Alexander Ladino-Bejarano, Cristian Rivera‐Moyano
European Journal of Organic Chemistry
Multicomponent Synthesis of Heterocycles
article

Tandem Synthesis and Photophysical Behavior of Pyrazolo[3,4‐ h ][1,6]naphthyridines: A Theoretical–Experimental Approach

Jaime Portilla, Carlos Cifuentes, Alexander Ladino-Bejarano, Cristian Rivera‐Moyano
article en

Abstract

A microwave‐assisted tandem synthesis of pyrazolo[3,4‐ h ][1,6]naphthyridines bearing substituents with diverse stereoelectronic character (i.e., alkyl, aryl, CN, and MeO) is reported. Products were obtained in good yields by reacting 5‐aroyl‐pyrazolo[3,4‐ b ]pyridines with malononitrile in methanol, where the expected Knoevenagel reaction does not proceed. Instead, a solvent molecule drives a tandem reaction that affords three tricyclic N ‐heteroaromatic compounds. Their molecular architecture prompted us to explore their photophysics, including solvatofluorochromism and aggregation properties. The 4‐methoxyphenyl‐substituted derivative exhibited the best behavior ( ɸ F up to 62%, with up to 80% water tolerance) due to intramolecular charge transfer within the π ‐extended tricyclic core; this process is notably attenuated or enhanced by the aryl substituent. Density functional theory calculations were used to interpret the experimental results, establish a mechanism for product formation, and correlate the structural and spectroscopic properties of the three synthesized tricyclic compounds.

European Journal of Organic Chemistry
Universidad de Los Andes (CO)
Clean water and sanitation
Openalex Percentile: Top 22%
Multicomponent Synthesis of Heterocycles
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Tandem Synthesis and Photophysical Behavior of Pyrazolo[3,4‐ h ][1,6]naphthyridines: A Theoretical–Experimental Approach — Jaime Portilla, Carlos Cifuentes, et al. · European Journal of Organic Chemistry (2026) | TGRS Research Map | TGRS