Differing thermal properties of protic and aprotic ionic liquids can impact their applications in chemical processes, particularly regarding thermal stability.
Thermal behavior assessments indicate distinct phase transitions and viscosity changes between protic and aprotic ionic liquids under varying conditions.
Investigation of thermal properties was conducted using a combination of differential scanning calorimetry and thermal conductivity measurements in precise environments.
Understanding the thermal behavior of these ionic liquids may enable optimization in their performance for industrial applications and energy storage.