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Published on: June 27, 2014
Kinetics of lisinopril intramolecular cyclization in solid phase monitored by Fourier transform infrared microscopy
Effendi Widjaja1, Wei Jian Tan
1Institute of Chemical and Engineering Sciences, Jurong Island Singapore. effendi_widjaja@ices.a-star.edu.sg
Abstract:
The solid-state intramolecular cyclization of lisinopril to diketopiperazine was investigated by in situ Fourier transform infrared (FT-IR) microscopy. Using a controllable heating cell, the isothermal transformation was monitored in situ at 147.5, 150, 152.5, 155, and 157.5 degrees C. The collected time-dependent FT-IR spectra at each isothermal temperature were preprocessed and analyzed using a multivariate chemometric approach. The pure component spectra of the observable component (lisinopril and diketopiperazine) were resolved and their time-dependent relative contributions were also determined. Model-free and various model fitting methods were implemented in the kinetic analysis to estimate the activation energy of the intramolecular cyclization reaction. Arrhenius plots indicate that the activation energy is circa 327 kJ/mol.

