首页> 外文OA文献 >Ab initio study of ternary complexes X:(HCNH)+:Z with X, Z = NCH, CNH, FH, ClH, and FCl: Diminutive cooperative effects on structures, binding energies, and spin-spin coupling constants across hydrogen bonds
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Ab initio study of ternary complexes X:(HCNH)+:Z with X, Z = NCH, CNH, FH, ClH, and FCl: Diminutive cooperative effects on structures, binding energies, and spin-spin coupling constants across hydrogen bonds

机译:X:(HCNH)+:Z与X,Z = NCH,CNH,FH,ClH和FCl的三元络合物的从头算研究:对结构,结合能和氢键上的自旋-自旋偶合常数的协同作用很小

摘要

Ab initio calculations have been performed on a series of complexes in which (HCNH)+ is the proton donor and CNH, NCH, FH, ClH, and FCl (molecules X and Z) are the proton acceptors in binary complexes X:HCNH + and HCNH+:Z, and ternary complexes X:HCNH+:Z. These complexes are stabilized by C-H+•••A and N-H+•••A hydrogen bonds, where A is the electron-pair donor atom of molecules X and Z. Binding energies of the ternary complexes are less than the sum of the binding energies of the corresponding binary complexes. In general, as the binding energy of the binary complex increases, the diminutive cooperative effect increases. The structures of these complexes, data from the AIM analyses, and coupling constants 1J(N-H), 1hJ(H-A), and 2hJ(N-A) for the N-H+•• •A hydrogen bonds, and 1J(C-H), 1hJ(H-A), and 2hJ(C-A) for the C-H+•••A hydrogen bonds provide convincing evidence of diminutive cooperative effects in these ternary complexes. In particular, the symmetric N•••H +•••N hydrogen bond in HCNH+:NCH looses proton-shared character in the ternary complexes X:HCNH+:NCH, while the proton-shared character of the C•••H +•••C hydrogen bond in HNC:HCNH+ decreases in the ternary complexes HNC:HCNH+:Z and eventually becomes a traditional hydrogen bond as the strength of the HCNH +•••Z interaction increases. © 2011 American Chemical Society.
机译:从头算计算了一系列配合物,其中(HCNH)+是质子供体,而CNH,NCH,FH,ClH和FCl(分子X和Z)是二元配合物X:HCNH +和C中的质子受体。 HCNH +:Z和三元络合物X:HCNH +:Z。这些配合物通过C-H +••A和N-H +•••A氢键稳定,其中A是分子X和Z的电子对供体原子。三元配合物的结合能小于相应的二元配合物的结合能。通常,随着二元复合物的结合能增加,协同作用减小。这些配合物的结构,来自AIM分析的数据以及N-H +••A氢键的耦合常数1J(NH),1hJ(HA)和2hJ(NA)和1J(CH),1hJ( HA)和C-H +•••A氢键的2hJ(CA)提供了令人信服的证据,证明这些三元配合物中的协同作用很小。尤其是,HCNH +:NCH中对称的N•••H +•••N氢键失去了三元络合物X:HCNH +:NCH中的质子共享特性,而C•••H +的质子共享特性HNC:HCNH +中的•••C氢键在三元复合物HNC:HCNH +:Z中降低,并随着HCNH +•••Z相互作用强度的增加最终成为传统的氢键。 ©2011美国化学学会。

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