In search of new multifunctional hybrid materials and in order to investigate the influence of chemical modification on the possible synergy between properties, the carboxylate and sulfonate derivatives of photo- and thermochromic N-salicylidene aniline were successfully inserted into Co(II)- and Zn(II)-based layered simple hydroxides, resulting in four novel hybrids: Co--Sali-COO, Co--Sali-SO, Zn--Sali-COO, and Zn--Sali-SO. All synthesized hybrids adopt a double organic layered configuration, which prevents the photoisomerization ability of -Sali-R molecules in the hybrids. However, the Zn hybrids exhibit fluorescence upon exposure to UV light due to the excited-state intramolecular proton transfer (ESIPT) mechanism. The thermally stimulated keto-enol tautomerization of -salicylidene aniline in the hybrids was related with the changes in interlamellar spacings observed by temperature-dependent PXRD. This tautomerization process was prominently evident in the Co--Sali-SO hybrid (about 11% increase in -spacing upon decreasing the temperature to -180 °C). Finally, the Co--Sali-R hybrids exhibit the typical magnetic behavior associated with Co(II)-based LSHs (ferrimagnetic ordering at = 6.8 and 7.7 K for Co--Sali-COO and Co--Sali-SO, respectively). This work offers insights into isomerization in LSHs and the ESIPT mechanism's potential in new luminescent materials and prospects for designing new multifunctional materials.

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http://dx.doi.org/10.1021/acs.inorgchem.3c03013DOI Listing

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