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1)  Mulliken population
Mulliken布居数
1.
Comparing the Bond Mulliken population,we found which bond was the initial bond for pyrolysis and then we got the intermediate.
用密度泛函 ( DFT)方法 ,在 UB3LYP/6- 31 G( d)水平上研究了煤中吡啶型氮的热解机理 ,对热解过程中由于官能团周围环境的不同而形成的三类吡啶自由基进行了量子化学计算 ,通过对键的 Mulliken布居数等计算结果的分析 ,分别得到了这三类自由基的热解途径 。
2.
The present work employs the total-energy psudopotential technique within the framework of the density-functional theory with both the local-density approximation(LDA) and the generalized gredu approximation(GGA) for the exchange-correlation so as to calculate the structural and electronic properties and Mulliken population analysis of Li4CaB2O6 in the orthorhombic structure.
本文通过总能赝势方法理论研究了八面体晶体材料Li4CaB2O6的晶体和电子结构以及Mulliken布居数;本文使用的总能赝势方法包括局域密度近似和广义梯度近似两种密度泛涵理论。
2)  Bond Mulliken Population
Mulliken 重叠布居数
3)  mulliken population
Mulliken布居
1.
On the basis of the Mulliken populations and bond lengths, the O2-N3 fission is acce.
基于Mulliken布居和键长分析,五种硝酸酯分子的热分解始于O2—N3键的断裂,且由Mulliken电荷分布推知分子热解产生NO2气体。
4)  Mulliken's overlap population
Mulliken布居
1.
The comparison of the judgment of chemical bond strength by means of bond energy ( EAB ) and Mulliken's overlap population (MAB), has been discussed in this paper.
用键能E_(AB)和Mulliken布居对化学键强度的判别进行了分析比较。
5)  mulliken population
Mulliken集居数
1.
The structural parameters of PNHAAs, such as the the maximum N-NO2 bond length (LBmax), the least N-N Mulliken population (BN-n), the least negative charge on the nitro group (QNO2) and OB100, were studied t.
通过研究PNHAAs的结构参数,如N-NO2最大键长、N-NO2键的最小Mulliken集居数、-NO2所带最小负电荷、氧平衡,预测了10个标题物的相对稳定性或感度(起爆的难易程度。
2.
The fully optimized geometrical structure, Mulliken population and the binding energy be-tween UO 22+ ( PuO 22+) and H2O in UO 22+?nH2O ( PuO 22+?nH2O) have also been studied.
然后对铀酰和钚酰水合离子的几何构型、Mulliken集居数分布以及铀酰(钚酰)与配体水分子的结合能进行计算,计算结果表明UO22+?5H2O和PuO22+?5H2O分别为铀酰和钚酰系列水合离子中最稳定的配合物。
6)  atomic net charge
Mulliken成键布居
1.
The atomic net charges,Mulliken's overlap population and molecule frontier orbital energy were researched by the numbers.
计算得到原子净电荷分布、Mulliken成键布居和分子前沿轨道能量。
补充资料:马利肯布居数分析
分子式:
CAS号:

性质:又称马利肯集居数分析。马利肯提出的布居数分析法,即将电子电荷分配给分子中各原子、原子轨道和化学键的分析方法。这种方法将分子轨道理论所获得的波函数转化为直观的化学信息,从而研究分子中电子的转移、分子的极性、化学键的类型和强度等。

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