Monoterpene-based metallophthalocyanines: Sustainable synthetic approaches and photophysical studies

Author:

Gonzalez Andreia C. S.1,Damas Liliana1,Aroso Rafael T.1,Tomé Vanessa A.1,Dias Lucas D.12,Pina João1,Carrilho Rui M. B.1,Pereira Mariette M.1

Affiliation:

1. Coimbra Chemistry Centre, Departamento de Química, Universidade de Coimbra, Rua Larga, 3004-535, Coimbra, Portugal

2. São Carlos Institute of Physics, University of São Paulo, 13566-590, São Carlos — SP, Brazil

Abstract

Tetra-substituted zinc(II) and copper(II) phthalocyanines bearing peripheral alkoxy-monoterpene groups were prepared by conventional vs. non-conventional synthetic approaches (ultrasound and microwave irradiation). The synthesis of (1[Formula: see text]-(–)-myrtenol (a) and (1[Formula: see text],2[Formula: see text],5[Formula: see text]-([Formula: see text]-menthol (b) derived phthalonitrile precursors was performed through ipso-nitro aromatic substitution reactions, with optimal conditions being obtained using ultrasound irradiation, which allowed us to achieve full conversions in 4.5 h, with isolated yields up to 74%. The subsequent cyclotetramerization of monoterpene-based phthalonitriles was carried out using Zn(II) or Cu(II) salts as metal templates, and also using conventional and non-conventional heating methods. Microwave-assisted synthesis was shown to be the most efficient approach, providing complete conversions in 1 h, yielding the target monoterpene-based metallophthalocyanines in up to 70% isolated yields. Furthermore, photophysical and photochemical studies revealed that Zn(II) phthalocyanines possess fluorescence quantum yields in the range of [Formula: see text] 0.27–0.29, while Cu(II) phthalocyanines exhibited room temperature phosphorescence. In addition, the monoterpene-based Zn(II) phthalocyanines led to high singlet oxygen quantum yields ([Formula: see text] 0.55–0.69).

Funder

Foundation for Science and Technology, I.P.

FCT

FAPESP

Publisher

World Scientific Pub Co Pte Lt

Subject

General Chemistry

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