TY - JOUR
T1 - Long-Range Supramolecular Synthon Isomerism
T2 - Insight from a Case Study of Vinylic Tellurium Trihalides Cl(Ph)C=C(Ph)TeX3 (X = Cl, I)
AU - Torubaev, Yury V.
AU - Samigullina, Aida S.
N1 - Funding Information:
Funding: This research was funded by the Ministry of Science and Higher Education of the Russian Federation as part of the State Assignment of the Kurnakov Institute of General and Inorganic Chemistry of the Russian Academy of Sciences.
Publisher Copyright:
© 2022 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2022/3/1
Y1 - 2022/3/1
N2 - A slight modification of the synthetic procedure resulted in a new (Cc) polymorph of vinylic tellurium-trichloride Z-Cl(Ph)C=C(Ph)TeCl3 (1, β-form) which is stabilized by Te· · · Cl chalcogen bonds, assembling its molecules into the zigzag chains. Such a packing motive is in contrast to the known (Pca21 ) polymorph of Z-Cl(Ph)C=C(Ph)TeCl3 (1, α-form, CCDC refcode: BESHOW), which is built upon Te· · · π(Ph) chalcogen bonded chains. We noted a similar case of [Te· · · halogen] vs. [Te· · · π(Ph)] supramolecular synthon polymorphism in its triiodide congener Z-Cl(Ph)C=CPh(TeI3 ) (2, α and β-polymorphic forms). Quantum chemical calculations of the intermolecular interaction and lattice energies for 1α–β and 2α–β supported the assumption that α is thermodynamic while β is a kinetic form. Kinetic forms 1β and 2β are isostructural (Cc), while the thermodynamic forms 1α (Pca21 ) and 2α (P21 /c) are not and feature an unusual example of long-range supramolecular synthon module isomerism. In other words, 1α–2α pairs demonstrate very similarly to isostructural Te· · · πPh ChB stabilized chains, which are further packed differently relative to each other, following different angular geometry of type-I Cl· · · Cl and type-II I· · · I halogen bonding. These structural considerations are backed by quantum chemical calculations that support the proposed hierarchy of primary and secondary supramolecular synthons and the assignment of α and β as thermodynamic and kinetic forms, respectively.
AB - A slight modification of the synthetic procedure resulted in a new (Cc) polymorph of vinylic tellurium-trichloride Z-Cl(Ph)C=C(Ph)TeCl3 (1, β-form) which is stabilized by Te· · · Cl chalcogen bonds, assembling its molecules into the zigzag chains. Such a packing motive is in contrast to the known (Pca21 ) polymorph of Z-Cl(Ph)C=C(Ph)TeCl3 (1, α-form, CCDC refcode: BESHOW), which is built upon Te· · · π(Ph) chalcogen bonded chains. We noted a similar case of [Te· · · halogen] vs. [Te· · · π(Ph)] supramolecular synthon polymorphism in its triiodide congener Z-Cl(Ph)C=CPh(TeI3 ) (2, α and β-polymorphic forms). Quantum chemical calculations of the intermolecular interaction and lattice energies for 1α–β and 2α–β supported the assumption that α is thermodynamic while β is a kinetic form. Kinetic forms 1β and 2β are isostructural (Cc), while the thermodynamic forms 1α (Pca21 ) and 2α (P21 /c) are not and feature an unusual example of long-range supramolecular synthon module isomerism. In other words, 1α–2α pairs demonstrate very similarly to isostructural Te· · · πPh ChB stabilized chains, which are further packed differently relative to each other, following different angular geometry of type-I Cl· · · Cl and type-II I· · · I halogen bonding. These structural considerations are backed by quantum chemical calculations that support the proposed hierarchy of primary and secondary supramolecular synthons and the assignment of α and β as thermodynamic and kinetic forms, respectively.
KW - chalcogen bonding
KW - disappearing polymorph
KW - LSAM
KW - noncovalent interactions
KW - organotellurium
KW - polymorphism
KW - supramolecular synthon
KW - synthon module
UR - http://www.scopus.com/inward/record.url?scp=85130309599&partnerID=8YFLogxK
U2 - 10.3390/chemistry4010017
DO - 10.3390/chemistry4010017
M3 - Article
AN - SCOPUS:85130309599
SN - 2624-8549
VL - 4
SP - 196
EP - 205
JO - Chemistry (Switzerland)
JF - Chemistry (Switzerland)
IS - 1
ER -