Metal Organic FrameWork Encapsulated Luminous Quantum Dots Functional Composite for OptoelectronicApplications
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Date
2025
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Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
Metal-organic frameworks (MOFs) offer substantial structural benefits and outstanding application
in numerous industries, due to their huge specific surface area, high porosity, open pore structure,
and easily changeable and functionalized porous surface. However, MOFs by themselves have
several limitations, including low stability, set pore size, and restricted electrical conductivity. The
innovative incorporation of QDs into MOF structures can get beyond these restrictions. While the
host (MOFs) framework offers optimal connections to the guest (QDs) for improving stability,
extended carrier lifetime, improved, greater photoluminescence quantum yield, and synergic
features, the resulting host-guest structure exhibits a wide variety of synergetic qualities. In this
research project novel Zif-67@ZnSe-QDs composites are synthesized by facile wet chemical
method. The photoluminescence spectroscopy technique was employed to explore the
optoelectronic applications focusing on luminescence/sensing properties of the synthesized
composites. The UV-visible spectroscopy was done to estimate the band gap of the composites.
The crystallographic structure of the composites was studied using XRD. FTIR and Raman
spectroscopy was used to examine the vibrational modes and functional groups of the materials.
SEM analysis was used to determine the morphology of the samples.
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Department of Physic, FA23, NATURAL SCIENCES::Physics, Metal Organic, Encapsulated Luminou, Functional Composite, Dr. Faiza Mustafa