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<dc:creator>Olmo Alonso, Fabiola</dc:creator>
<dc:creator>Garoz Ruiz, Jesús</dc:creator>
<dc:creator>Colina Santamaría, Álvaro</dc:creator>
<dc:creator>Heras Vidaurre, Aránzazu</dc:creator>
<dc:date>2020-09</dc:date>
<dc:description>In this work, UV/Vis spectroelectrochemistry (SEC), in a thin-layer regime and parallel configuration, is selected to solve a&#xd;
complex mixture that contains dopamine (DA), ascorbic acid (AA) and uric acid (UA). These molecules, like many other&#xd;
biological compounds, are assuming a highly important place in analytical and biomedical fields due to the fundamental role&#xd;
that they play in human metabolism. In addition, low or high levels of these compounds are associated with diseases such as&#xd;
Parkinson’s disease. For this reason, the quantification of these biomolecules is becoming increasingly critical. However, some&#xd;
drawbacks must be overcome, because the three molecules coexist in the human body, and the species are subject to mutual&#xd;
interference. In fact, they are all oxidized at similar potentials, and their UV/Vis absorption bands overlap, greatly complicating&#xd;
their quantification. For this reason, derivative SEC together with suitable chemometric tools such as PARAFAC are proposed to&#xd;
solve this complex matrix. This technique allows us to separate the contribution of each of these molecules present in a sample&#xd;
and to quantify all of them, achieving high resolution and reproducibility. Besides, detection limits at the micromolar level are&#xd;
achieved for DA, AA and UA in mixture solutions. This work thus demonstrates the great potential for derivative potentiodynamic&#xd;
SEC combined with the appropriate chemometric tools in solving complex mixtures, a field where SEC is still taking the&#xd;
first steps.</dc:description>
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<dc:identifier>http://hdl.handle.net/10259/6124</dc:identifier>
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<dc:publisher>Springer</dc:publisher>
<dc:title>Derivative UV/Vis spectroelectrochemistry in a thin-layer regime: deconvolution and simultaneous quantification of ascorbic acid, dopamine and uric acid</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
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