首页> 外文期刊>Computational & theoretical chemistry >Probing Au center dot center dot center dot O and Au center dot center dot center dot P regium bonding interaction in AuX (X = F, Cl, Br)center dot center dot center dot RPHOH (R = CH3, F, CF3, NH2, CN) complexes
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Probing Au center dot center dot center dot O and Au center dot center dot center dot P regium bonding interaction in AuX (X = F, Cl, Br)center dot center dot center dot RPHOH (R = CH3, F, CF3, NH2, CN) complexes

机译:探测AU中心点中心点中心点O和Au中心点中心点中心点P Regium键合相互作用在AUX(X = F,CL,BR)中心点中心点中心点RphOH(r = CH3,F,CF3,NH2, CN)复合物

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摘要

CCSD(T) and MP2/aug-cc-pVTZ (PP) calculations have been carried out to investigate interaction energies and binding properties on the regium bonding intermolecular interaction between AuX (X = F, Cl, Br) and RPHOH (R=CH3, F, CF3, NH2, CN). For the AuX.RPHOH complexes, four types of configurations (trans-P, trans-O, cis-P and cis-O) are observed. The magnitude of molecular interaction energies is in the order of NH2 > CH3 > F > CF3 > CN, F > Cl > Br with the nature of the substituent directly affecting the strength of the interaction. The transition structures which present the energy barriers to the inter-conversion between the trans-type and the cis-type structures and the Boltzmann distribution to quantitatively determine the proportion of the cis-type and the trans-type geometries have been obtained. The natural resonance theory confirms the presence of the Au center dot center dot center dot O and the Au center dot center dot center dot P regium bonds with two major secondary resonance structures X-Au:RPHOH (omega I) <-> X:Au-RPHOH (omega II). In addition, LMO-EDA energy decomposition analysis is performed on the regium bonded complexes to predict the dominant energy component and the nature of the Au center dot center dot center dot O and the Au center dot center dot center dot P regium bonded interaction.
机译:已经进行了CCSD(T)和MP2 / AUG-CC-PVTZ(PP)计算,以研究辅助(X = F,CL,BR)和RphOH之间的Regium键合分子间相互作用的相互作用能和结合性质(R = CH3 ,f,cf3,nh2,cn)。对于Aux.Rph​​oh复合物,观察到四种类型的配置(Trans-P,Trans-O,CIS-P和CIS-O)。分子相互作用能量的幅度为NH 2> CH3> F> CF3> CN,F> Cl> Br,其具有直接影响相互作用强度的取代基的性质。将能量屏障向跨型和CIS型结构之间的互换和螺栓直播分布的转换中的过渡结构定量地确定了CIS型和反式型几何形状的比例。自然共振理论证实了Au中心点中心点中心点O和Au中心点中心点中心点P Regium键的存在,具有两个主要的二次共振结构X-Au:RphOH(Omega i)< - > x:Au -rphoh(omegai ii)。此外,对Regium键合复合物进行LMO-EDA能量分解分析,以预测AU中心点中心点中心点O和AU中心点中心点中心点P Regium键合相互作用的显性能量分解和性质。

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