Start Date

2019

Description

To further the advancement of science, newer and better ways to regulate as well as optimize complex systems are continuously sought after. The previous efforts of this project have demonstrated the ability of characterizing selfassembling supramolecular systems in astounding detail. Although these systems were initially designed with a single chemical target, this project has allowed discovery of how homogenous solutions always contain additional assemblages. In this project, different systems are studied with UV-Vis, CD, NMR, and Mass Spec. The necessary methods that are used to conduct this research include analysis of spectrophotometric titrations as well as the utilization of computational tools.

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To further the advancement of science, newer and better ways to regulate as well as optimize complex systems are continuously sought after. The previous efforts of this project have demonstrated the ability of characterizing selfassembling supramolecular systems in astounding detail. Although these systems were initially designed with a single chemical target, this project has allowed discovery of how homogenous solutions always contain additional assemblages. In this project, different systems are studied with UV-Vis, CD, NMR, and Mass Spec. The necessary methods that are used to conduct this research include analysis of spectrophotometric titrations as well as the utilization of computational tools.