Investigation of Recyclable Waste and Chemical Derived Carbon Dots for Fluorometric Detection of Environmental Toxins and Anti Counterfeiting Applications
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Abstract
The scientific community is very concerned about the toxicity of heavy metal
newlineions and nitro-explosive compounds since they are highly harmful and non-biodegradable
newlinecontaminants of natural resources. Therefore, it is especially important to be aware of the
newlinepresence of metal ions in the aqueous system. The last 20 years have seen an abnormally
newlinehigh emission of organic pollutants as a result of industrialization and population growth.
newlineThe possible release of organic contaminants from industries such as printing, textiles,
newlinepaint, insecticides, and pharmaceuticals can be attributed to these two problems. Anticounterfeiting
newlinetechnology is in great demand due to the devastation that counterfeiting
newlinedoes to both human health and the world economy. High-security anti-counterfeiting
newlinematerials in a range of colours and intricate or multiple authentication systems are
newlinerequired to stop counterfeiting. This thesis describes the use of carbon-based
newlinenanomaterials in anti-counterfeiting and detection of organic contaminant applications.
newlineThe technological benefits of carbon-based nanomaterials, such as graphene
newlineoxide (GO), carbon nanotubes (CNTs), fullerene (C60), graphene quantum dots (GQDs),
newlineand carbon dots (CDs), have been actively pursued over the last 20 years. CDs have
newlinegained prominence due to their powerful fluorescence, adjustable luminescence, and easy
newlinesynthesis method. The unique qualities of CDs have created prospective needs in the field
newlineof sensors and fluorescence-based applications. The main goal of this doctoral research
newlineproject is to fabricate a carbon dots-based sensor probe from waste dry-cell batteries and
newlinechemical sources in order to detect the organic pollutants in water. The experimental data
newlineneeded to understand how emission is quenched is presented
newline