首页> 外文期刊>Phosphorus, Sulfur, and Silicon and the Related Elements >Theoretical study and comparasion of Bent's rule with hardness and polarizibility for SF4, SF4O, PCl4F, PCl3F2, PCl2F3, PCl2F4 molecules
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Theoretical study and comparasion of Bent's rule with hardness and polarizibility for SF4, SF4O, PCl4F, PCl3F2, PCl2F3, PCl2F4 molecules

机译:对SF4,SF4O,PCl4F,PCl3F2,PCl2F3,PCl2F4分子的Bent规则与硬度和极化率的理论研究和比较

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摘要

Electronic parameters such as HOMO-LUMO energies, Mulliken charges, dipole moments for different isomers of SF4, SF4O, PCl4F, PCl3F2, PCl2F3, PCl2F4 molecules have been carried out at the MP2 level of theory using 6-31G(d), 6-311G(d,p) basis sets by applying Gaussian 03 Revision B-04. Maximum hardness and minimum polarizability have been calculated to see the consistency with the Bent rule. According to Maximum Hardness Principles (MHP) and Minimum Polarizability Principles (MPP) most stable structure can be predicted if they have different isomers. We have investigated how bond orbitals change for studied molecules by natural bond orbital (NBO) analysis, as well. There is agreement between our results and experimentaql results on the dipole moments and structures of the phosphorus chlorofluorides obtained by IR and Raman vibrational data, NMR measurements and Cl-35 pure quadrupole resonance frequencies reported earlier by Holmes aand coworkers.
机译:SF4,SF4O,PCl4F,PCl3F2,PCl2F3,PCl2F4分子的不同异构体的HOMO-LUMO能量,Mulliken电荷,偶极矩等电子参数已使用6-31G(d),6-通过应用高斯03修订版B-04获得311G(d,p)基集。已计算出最大硬度和最小极化率,以查看与弯曲规则的一致性。根据最大硬度原理(MHP)和最小极化率原理(MPP),如果它们具有不同的异构体,则可以预测最稳定的结构。我们也通过自然键轨道(NBO)分析研究了被研究分子的键轨道如何变化。我们的结果与实验结果在通过红外和拉曼振动数据,NMR测量和霍姆斯和同事先前报道的Cl-35纯四极共振频率获得的氯氟化磷的偶极矩和结构上是一致的。

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