Melamine-Melem Adduct Phases: Investigating the Thermal Condensation of Melamine

By studying the thermal condensation of melamine, we have identified three solid molecular adducts consisting of melamine C3N3(NH2)3 and melem C6N7(NH2)3 in differing molar ratios. We solved the crystal structure of 2 C3N3(NH2)3⋅C6N7(NH2)3 (1; C2/c; a=21.526(4), b=12.595(3), c=6.8483(14) Å; β=94.80(...

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Veröffentlicht in:Chemistry : a European journal 2009-12, Vol.15 (47), p.13161-13170
Hauptverfasser: Sattler, Andreas, Pagano, Sandro, Zeuner, Martin, Zurawski, Alexander, Gunzelmann, Daniel, Senker, Jürgen, Müller-Buschbaum, Klaus, Schnick, Wolfgang
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container_end_page 13170
container_issue 47
container_start_page 13161
container_title Chemistry : a European journal
container_volume 15
creator Sattler, Andreas
Pagano, Sandro
Zeuner, Martin
Zurawski, Alexander
Gunzelmann, Daniel
Senker, Jürgen
Müller-Buschbaum, Klaus
Schnick, Wolfgang
description By studying the thermal condensation of melamine, we have identified three solid molecular adducts consisting of melamine C3N3(NH2)3 and melem C6N7(NH2)3 in differing molar ratios. We solved the crystal structure of 2 C3N3(NH2)3⋅C6N7(NH2)3 (1; C2/c; a=21.526(4), b=12.595(3), c=6.8483(14) Å; β=94.80(3)°; Z=4; V=1850.2(7) Å3), C3N3(NH2)3⋅C6N7(NH2)3 (2; Pcca; a=7.3280(2), b=7.4842(2), c=24.9167(8) Å; Z=4; V=1366.54(7) Å3), and C3N3(NH2)3⋅3 C6N7(NH2)3 (3; C2/c; a=14.370(3), b=25.809(5), c=8.1560(16) Å; β=94.62(3)°; Z=4; V=3015.0(10) Å3) by using single‐crystal XRD. All syntheses were carried out in sealed glass ampoules starting from melamine. By variation of the reaction conditions in terms of temperature, pressure, and the presence of ammonia‐binding metals (europium) we gained a detailed insight into the occurrence of the three adduct phases during the thermal condensation process of melamine leading to melem. A rational bulk synthesis allowed us to realize adduct phases as well as phase separation into melamine and melem under equilibrium conditions. A solid‐state NMR spectroscopic investigation of adduct 1 was conducted. Mixing melamine and melem molecules: Molecular adducts consisting of melamine and melem in various ratios have been yielded by the thermal condensation of melamine (see graphic). Our structural and spectroscopic characterization of these compounds sheds new light on the condensation process of carbon nitride precursors.
doi_str_mv 10.1002/chem.200901518
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We solved the crystal structure of 2 C3N3(NH2)3⋅C6N7(NH2)3 (1; C2/c; a=21.526(4), b=12.595(3), c=6.8483(14) Å; β=94.80(3)°; Z=4; V=1850.2(7) Å3), C3N3(NH2)3⋅C6N7(NH2)3 (2; Pcca; a=7.3280(2), b=7.4842(2), c=24.9167(8) Å; Z=4; V=1366.54(7) Å3), and C3N3(NH2)3⋅3 C6N7(NH2)3 (3; C2/c; a=14.370(3), b=25.809(5), c=8.1560(16) Å; β=94.62(3)°; Z=4; V=3015.0(10) Å3) by using single‐crystal XRD. All syntheses were carried out in sealed glass ampoules starting from melamine. By variation of the reaction conditions in terms of temperature, pressure, and the presence of ammonia‐binding metals (europium) we gained a detailed insight into the occurrence of the three adduct phases during the thermal condensation process of melamine leading to melem. A rational bulk synthesis allowed us to realize adduct phases as well as phase separation into melamine and melem under equilibrium conditions. A solid‐state NMR spectroscopic investigation of adduct 1 was conducted. 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Mixing melamine and melem molecules: Molecular adducts consisting of melamine and melem in various ratios have been yielded by the thermal condensation of melamine (see graphic). 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subjects adduct phases
condensation
melamine
NMR spectroscopy
X-ray diffraction
title Melamine-Melem Adduct Phases: Investigating the Thermal Condensation of Melamine
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