Supramolecular assembly driven by weak C-Hâ¯S[double bond, length as m-dash]P/O and CHâ¯HC contacts was studied in a new bis(thiophosphoramide) structure, {(C(2)H(5)O)(2)P(S)}(2)N(2)C(4)H(8), using X-ray crystallography and DFT computational methods. Combined QTAIM/noncovalent interaction (NCI) and natural bond orbital (NBO) analyses were used to gain deeper insights into the nature, energy and strengths of these contacts. The C-Hâ¯O hydrogen bond was found to be the strongest interaction, followed by two Hâ¯H and then Hâ¯S contacts. Crystal lattice energy calculations were performed, and the components contributing to the intermolecular interactions were investigated and discussed (electrostatic, polarization, dispersion and repulsion). The dispersion forces were found to be the most prominent in the network energy. The relative contributions of the intermolecular contacts were visualized by Hirshfeld surfaces and two-dimensional fingerprint diagrams. Some topics related to geometry and conformation were also studied.
Competition among weak C-Hâ¯O/S/H interactions in the crystal structure of {(C(2)H(5)O)(2)P(S)}(2)N(2)C(4)H(8) bis(thiophosphoramide): experimental/computational studies.
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作者:Khorramaki Maliheh, Pourayoubi Mehrdad, Darugar Vahidreza, Vakili Mohammad, NeÄas Marek, Akbari Mahmood, Maaza Malik
| 期刊: | RSC Advances | 影响因子: | 4.600 |
| 时间: | 2025 | 起止号: | 2025 Jul 2; 15(28):22671-22681 |
| doi: | 10.1039/d5ra01306b | ||
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