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Polymorphism and cold crystallization in optically nonlinear N-benzyl-2-methyl-4-nitroaniline crystal studied by X-ray diffraction, calorimetry and Raman spectroscopy

✍ Scribed by Katarzyna Piela; Ilona Turowska-Tyrk; Marek Drozd; M. Magdalena Szostak


Publisher
Elsevier Science
Year
2011
Tongue
English
Weight
637 KB
Volume
991
Category
Article
ISSN
0022-2860

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✦ Synopsis


Polymorphism of N-benzyl-2-methyl-4-nitroaniline (BNA), a terahertz emitter and frequency doubler, was detected and the crystal structures of orthorhombic and monoclinic polymorphs have been determined at room temperature. The differential scanning calorimetry (DSC) studies revealed monotropic phase transition of the monoclinic BNA crystal system at 362 K and during re-heating, after the molten BNA cooling, the cold crystallization of the both polymorphs. The variable-temperature Raman spectra in the 700-1700 cm À1 range also evidenced the polymorphic transformation from the monoclinic to the orthorhombic, the latter stable in the wide temperature range, crystal system. The comparison of structures, DSC curves, FT-IR and Raman spectra of two forms enabled to recognize the NAHÁÁÁO hydrogen bond in the orthorhombic and CAHÁÁÁO hydrogen bond in the monoclinic one as well as other intermolecular interactions. The role of dynamic disorder, intra-and intermolecular charge transfers in the molecular mechanism of optical nonlinearity has been discussed.


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Four phase transitions at: T h C1 ¼ 267:1 K, T h C2 ¼ 258:8 K, T h C3 ¼ 254:1 K and T h C4 ¼ 195:4 K (on heating) and at T c C1 ¼ 263:8 K, T c C2 ¼ 255:4 K, T c C3 ¼ 246:0 K (on cooling) were determined for [Ca(H 2 O) 4 ](ClO 4 ) 2 between 90 and 295 K by means of differential scanning calorimetry