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The first substituted macrocyclic ligand Py2N4S2 containing four naphthylmethylene pendant-armed groups: Synthesis and photophysical properties

V. García, A. Aldrey, C.S. De Castro, R. Bastida, A. Macías, C. Lodeiro, J.S. Seixas De Melo, C. Núñez, Catherine De Castro Orcid Logo

Inorganic Chemistry Communications, Volume: 36, Pages: 22 - 26

Swansea University Author: Catherine De Castro Orcid Logo

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Abstract

The synthesis of a pendant donor emissive macrocyclic ligand Py2N4S2 with up to four naphthylmethylene arms (L) has been achieved. Their derivative solid metal complexes (Co2 +, Ni2 +, Cu2 +, Zn2 +, Cd2 +, Hg2 + and Ag+) have been isolated and characterized. The photophysical properties of the free...

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Published in: Inorganic Chemistry Communications
ISSN: 1387-7003
Published: 2013
Online Access: Check full text

URI: https://cronfa.swan.ac.uk/Record/cronfa31932
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Abstract: The synthesis of a pendant donor emissive macrocyclic ligand Py2N4S2 with up to four naphthylmethylene arms (L) has been achieved. Their derivative solid metal complexes (Co2 +, Ni2 +, Cu2 +, Zn2 +, Cd2 +, Hg2 + and Ag+) have been isolated and characterized. The photophysical properties of the free ligand L and their complexation behaviour have been investigated in solution. In dichloromethane, the free ligand presents two emission bands which are related to the monomer naphthalene emission and a red-shifted band attributable to ground state dimers (interaction between two naphthalene chromophores), which was further validated from time-resolved data, with bi-exponential decay with absence of dynamic components. UV–Vis spectroscopy has revealed a 2:1 binding stoichiometry for Co2 +, Cu2 +, Zn2 +, Hg2 + and Ag+.
Keywords: Macrocycles; Dinuclear complex; Stability constant; Naphthalene; Pendant-arms; Sensor
College: Faculty of Science and Engineering
Start Page: 22
End Page: 26