A Theoretical Approach to Predict Deep Eutectic Formation: Locating the Lowest Melting Point
Implementing Organization
S. N. Bose National Centre For Basic Sciences
Principal Investigator
Prof. Ranjit Biswas
S. N. Bose National Centre For Basic Sciences
About
The project aims to develop a theoretical approach to predict deep eutectic formation by locating the lowest melting point in multicomponent mixtures. The goal is to provide a predictive model that considers interspecies interactions in both enthalpic and entropic contributions to the change in free energy of mixing. Deep Eutectic Solvents (DESs) are used as promising designer solvents due to their environment-friendly nature and tunable properties. However, the partitioning of the change in free energy into enthalpic and entropic contributions is still unknown. The ideal solution model (ISM) was developed to account for entropy change arising from volume effect, but a consistent theory requires incorporating intermolecular interactions in both enthalpy and entropy terms. The project has applied its theory to two acetamide-based DESs for initial validation, finding that the entropy-enthalpy tug of war is dictated by intermolecular interactions. The theory is proposed to be applied to various known DESs for predicting the eutectic temperature, testing its predictive power against experiments. The theoretical scheme will then be applied to predict the eutectic temperature of arbitrary mixtures, acting as a guide for liquid solvent engineers in designing solvents for industrial applications.
Source
Source
Anusandhan National Research Foundation/Science and Engineering Research Board (SERB), DST 2023-24
Science and Engineering Research Board (SERB), New Delhi
Anusandhan National Research Foundation (ANRF)
Quick Information
Focus Area
Melting Point Prediction
Start Year
2024
End Year
2027
Sanction Amount
₹ 6.60 L
Status
Ongoing
Contact
ranjit@bose.res.in
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
No. of Patents
Filed :00
Grant :00
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