C → N coordination bonds in (CCC) → N+ ← (L) complexes

被引:16
|
作者
Patel, Neha [1 ]
Falke, Balu [1 ]
Bharatam, Prasad V. [1 ]
机构
[1] Natl Inst Pharmaceut Educ & Res, Dept Med Chem, Sect 67, Sas Nagar 160062, Punjab, India
关键词
Divalent N-I compounds; Donor-acceptor interactions; Quantum chemical calculations; N-heterocyclic carbenes; Main group elements; DIVALENT CARBON(0) CHEMISTRY; MAIN-GROUP COMPOUNDS; ELECTRONIC-STRUCTURE; PROTON AFFINITIES; N(I) CHARACTER; DATIVE BONDS; CARBENE; CARBODICARBENES; THERMOCHEMISTRY; SILADICARBENE;
D O I
10.1007/s00214-018-2208-1
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Quantum chemical calculations were performed on a series of novel divalent N-I compounds, CCC -> N+ <- CO (1), CCC -> N+ <- N-2 (2), CCC -> N+ <- PPh3 (3), CCC -> N+ <- C(NH2)(2) (4), CCC -> N+ <- NHCMe (5) CCC -> N+ <- N-methyl-4-pyridylidene (6) and CCC -> N+ <- Cyclopropenylidene (7), where CCC is a carbocyclic carbene (cyclohexa-2,5-diene-4-(diaminomethynyl)-1-ylidene). Complete optimization of 3D structures indicates that the chosen structures are the global minima on their respective potential energy surfaces (tautomeric alternatives are much less stable). The CCC -> N+ coordination bond length is in the range of 1.353-1.399 angstrom, supporting the C -> N coordination bond character. This is also supplemented by very low CCC -> N bond rotational barriers (> 8 kcal/mol). The CCC -> N <- L angles are in the range of 118 degrees-131 degrees, suggesting that there is no heteroallene-type character at the central nitrogen atom. Electron localization function, lone pair occupancy calculations and partial charge analysis indicate the presence of excess electron density at the N+ centre. The nucleophilicity of the designed compounds was further measured by calculating the proton affinity and complexation energies with various Lewis acids like BH3, AlCl3 and AuCl at the N+ centre. All these studies suggest the presence of divalent N-I character in the designed compounds 1-7.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Electroluminescence of Tetradentate Pt(II) Complexes: O∧N∧N∧O versus C∧N∧N∧O Coordination
    Pander, Piotr
    Franca, Larissa Gomes
    Dias, Fernando B.
    Kozhevnikov, Valery N.
    INORGANIC CHEMISTRY, 2023, 62 (14) : 5772 - 5779
  • [22] ELECTRON-STRUCTURE AND REDOX PROPERTIES OF MACROCYCLIC [NI(TAAB)N+], [CU(TAAB)N+] COMPLEXES
    BELETSKY, IP
    TEORETICHESKAYA I EKSPERIMENTALNAYA KHIMIYA, 1987, 23 (04): : 421 - 428
  • [23] Differences between the CO and NO properties for stability of alkali metal complexes Me(XO)n+, X = C or N
    Larin, AV
    Trubnikov, DN
    Vercauteren, DP
    INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY, 2002, 90 (02) : 541 - 548
  • [24] SYNTHESIS, STRUCTURE, AND INTRAMOLECULAR MOBILITY OF FORMAL C=N+=C=N(-)-HETEROCUMULENES
    RAHMAN, MA
    ZSOLNAI, L
    HUTTNER, G
    JOCHIMS, JC
    CHEMISCHE BERICHTE-RECUEIL, 1983, 116 (07): : 2668 - 2675
  • [25] Theoretical mapping of new L-(N+)-L family of species with donor-acceptor bonding between N+ and ligand L
    Riedel, Sebastian
    Straka, Michal
    Pyykko, Pekka
    JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM, 2008, 860 (1-3): : 128 - 136
  • [26] A study of complexes Mg(NH3)n+• and Ag(NH3)n+, where n=1-8:: Competition between direct coordination and solvation through hydrogen bonding
    Shoeib, T
    Milburn, RK
    Koyanagi, GK
    Lavrov, VV
    Bohme, DK
    Siu, KWM
    Hopkinson, AC
    INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2000, 201 (1-3) : 87 - 100
  • [27] Macrocyclic complexes based on [N⋯I⋯N]+halogen bonds
    Yu S.
    Kalenius E.
    Frontera A.
    Rissanen K.
    Chemical Communications, 2021, 57 (93) : 12464 - 12467
  • [28] SYNTHESIS AND STRUCTURE OF HETEROCUMULENES WITH =C=N+=C=O AND =C=N=C=S UNITS
    ALTALIB, M
    JIBRIL, I
    JOCHIMS, JC
    HUTTNER, G
    CHEMISCHE BERICHTE-RECUEIL, 1984, 117 (11): : 3211 - 3221
  • [29] Subnanosecond Avalanche Switching Simulations of n+–n–n+ Silicon Structures
    N. I. Podolska
    P. B. Rodin
    Semiconductors, 2019, 53 : 379 - 384
  • [30] DEBYE TEMPERATURES OF [NI(MNT)2]N- [CATION]N+ COMPLEXES
    SIVARAMAN, K
    MAHADEVAN, C
    CRYSTAL RESEARCH AND TECHNOLOGY, 1992, 27 (02) : K25 - K27