Designed Synthesis of Multiluminescent Materials Using Lanthanide Metal-Organic Frameworks and Carbon Dots as Building-Blocks

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Abstract

A multiluminescent composite material, CDs@EuW–MOF, is synthesized by self-assembling molecular building-blocks in the presence of carbon dots (CDs). Using water soluble CDs within the growth media of a hydrophilic metal-organic framework (MOF) enables the incorporation of the CDs within MOF pores through a one-pot synthesis. The emission spectra obtained using a broad range of excitation wavelengths (295–400 nm) show multiple emissions including the Eu3+ red emission and the dual-color (blue and green) emissions of the CDs. The red emission intensity of Eu3+ ions decreases in the presence of water molecules, leading to the ratiometric detection of water in methanol within a wide response range of 0–30 % (V/V). Due to the quenching effect on the CDs emission, this composite can also sense acetonitrile. The results demonstrate that using a molecular building-block approach is an efficient route towards the design of multiluminescent functional materials.

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Gao, Y., Hilbers, M., Zhang, H., & Tanase, S. (2019). Designed Synthesis of Multiluminescent Materials Using Lanthanide Metal-Organic Frameworks and Carbon Dots as Building-Blocks. European Journal of Inorganic Chemistry, 2019(35), 3925–3932. https://doi.org/10.1002/ejic.201900876

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