2019
DOI: 10.1021/acs.cgd.9b00633
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True Polymorphic Phase Transition or Dynamic Crystal Disorder? An Investigation into the Unusual Phase Behavior of Barbituric Acid Dihydrate

Abstract: Crystalline barbituric acid dihydrate (BTADH) was previously thought to undergo a subtle temperature-dependent phase transition from a high-temperature orthorhombic Pnma space group to a nonmerohedrally twinned monoclinic P21/n phase below a transition temperature of ∼217 K. Questions remain on the true nature of the unusual transformation and the structure of the high-temperature crystal phase due to difficulties in resolving the Pnma structure from X-ray diffraction data and because of the subtlety of the st… Show more

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Cited by 8 publications
(8 citation statements)
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“…In extension of this study, we investigated crystals of BA containing two water molecules in the lattice, and the susceptibility of this form to yield cocrystals. Recently, King and coworkers reported on detailed structural studies on, and the unusual thermal phase behavior of, barbituric acid (BA) dihydrate [46]. Our results prove that during grinding at ambient temperature, this form is stable and does not undergo further transformation.…”
Section: Ss Nmr Structural Studies Of Ba/himo Cocrystalsupporting
confidence: 62%
“…In extension of this study, we investigated crystals of BA containing two water molecules in the lattice, and the susceptibility of this form to yield cocrystals. Recently, King and coworkers reported on detailed structural studies on, and the unusual thermal phase behavior of, barbituric acid (BA) dihydrate [46]. Our results prove that during grinding at ambient temperature, this form is stable and does not undergo further transformation.…”
Section: Ss Nmr Structural Studies Of Ba/himo Cocrystalsupporting
confidence: 62%
“…A similar approach was used to deduce the high-temperature crystal structure and presumed phase transformation kinetics for barbituric acid dihydrate. From theoretical models and terahertz spectroscopy, Paul et al determined that rather than undergoing a temperature-dependent phase change at high temperatures barbituric acid dihydrate exists in a thermally disordered state . Low-frequency vibrational spectroscopy can even be used to confirm the structures of unknown materials, often in conjunction with other methods such as crystal structure prediction …”
Section: Applications In Crystalline Systemsmentioning
confidence: 99%
“…From theoretical models and terahertz spectroscopy, Paul et al determined that rather than undergoing a temperature-dependent phase change at high temperatures barbituric dihydrate exists in a thermally disordered state. 21 Low-frequency vibrational spectroscopy can even be used to confirm the structures of unknown materials, often in conjunction with other methods such as crystal structure prediction. 161 Transformations between amorphous and crystalline phases are affected by several external factors including humidity, temperature, and pressure.…”
Section: ■ Introductionmentioning
confidence: 99%
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“…The study of API solid-state properties is nowadays considered essential by the pharmaceutical industry because it is well-recognized that focusing on solid-state characteristics allows us to optimize the in vivo performance of drugs. In fact, APIs can show a complex and unpredictable behavior when it comes to its solid-state arrangement. , Essentially, the same molecule can exist under different crystal habits (polymorphism) or as amorphous, solvates, or hydrates, and furthermore, interconversion between two different forms might occur even under mild conditions . Accordingly, it is necessary to study these aspects not only from a qualitative point of view but also by focusing on the quantitation of the different forms potentially present in the API synthesis crude and/or its formulation.…”
Section: Introductionmentioning
confidence: 99%