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Colorimetric Revealing of Ethanol-Water Cluster (E-Wc) Transitions in Binary Solution Based on Starch-I2
Hui-Shuang Li1,2, Hao-Jie Bai1,2, Hong-Wei Li1,2
1State Key Laboratory for Supramolecular Structure and Materials, College of Chemistry, Jilin University, No. 2699 Qianjin Street, Changchun 130012, China.
None:
We have developed a highly sensitive colorimetric probe based on starch-iodine (I2) crystallization for the precise discrimination of ethanol-water clusters (E-Wc) within binary ethanol-water solutions (E-Ws). This probe enables the identification of specific E-Wc species and their corresponding transition points. Notably, two distinct transition points were identified at ethanol volume fractions of 40-45% and 75-77%. The former corresponds to the structural transition from (H2O)m(EtOH) to (H2O)m(EtOH)n, characterized by a significant loss of blue coloration, while the latter signifies the transition from (H2O)m(EtOH)n to (H2O)(EtOH)n, as evidenced by alterations in the absorption intensity of the starch-I2 complex. Mechanistic studies demonstrate that the observed starch-I2 crystallization is governed by supramolecular E-Wc rather than individual ethanol or water molecules in the binary solution. By leveraging starch-I2 crystallization as a colorimetric bridge, we establish a direct correlation between E-Wc transitions and the iodine chromogenic effect. This approach enables the visual detection of transitions in colorless supramolecular assemblies, offering new insights into supramolecular science. Furthermore, as a simple, rapid, and visually interpretable detection method, this colorimetric probe holds promising applications in fields such as the food industry and supramolecular science.
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