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1.
在B3LYP/6-311G(d)水平上对Si2CN的各种可能异构体进行了研究,得到了其几何构型,结果表明:Si2CN有11个稳定的异构体,能量最低的是直线型异构体SiCNSi1,其次是四元环构型具有SiC桥键,电子态为^2A″的cSiSiCN6,第三稳定的是具有CSiSi三元环和环外NC键的N-cCSiSi10^2A1,第四稳定的是四元环具有SiN桥键^2A″电子态异构体cSiSiCN7。  相似文献   

2.
采用密度泛函方法对11顶点巢式碳硼烷C2B9H112-异构体进行了几何结构优化,分析了稳定性、电荷分布及分子轨道.结果表明,9个异构体都有对应的稳定构型,保持了巢式骨架结构.C取代开口五元环上B的异构体更稳定,且随取代数目增加和C原子间距增加而增加,C—C键和C—B键作用增强.C取代内层B使异构体稳定性降低,C—C键和C—B键长随之增长.负电荷主要集中在C原子上,开口五元环上的C原子上负电荷要比内层C原子更多,成为亲核取代反应中心.异构体分子前线轨道具有和η5-C5H5-相似的π键性质,ΔELUMO-HOMO反映的化学稳定性与结构能量稳定性趋势一致.  相似文献   

3.
N8H8环状异构体的结构与稳定性的理论研究   总被引:1,自引:1,他引:0  
孙丽  李来才  王欣  田安民 《化学学报》2008,66(11):1307-1316
采用密度泛函理论的B3LYP方法在6-311++G**基组水平上对N8H8氮氢环状化合物可能存在的构型进行了几何优化, 得到74种稳定异构体, 应用自然键轨道理论NBO和分子中的原子理论AIM分析了这些化合物成键特征和相对稳定性, G3MP2方法计算了各异构体的能量及生成热. 研究结果表明: N原子孤对电子到相邻的氮氮键的超共轭作用是影响氮氮键长变化的主要因素; N8H8环状异构体的稳定性顺序为: 六元环>七元环>八元环, 五元环>三元环>四元环, 六元环是这些N8H8环状异构体中最稳定的, 最不稳定的是四元环, G19是所有环状异构体中能量最低的; M3能量最高, 稳定性最差, A7密度最大.  相似文献   

4.
CnP-4(n=1~7)团簇结构与能量的密度泛函研究   总被引:1,自引:0,他引:1  
陈明旦  党丽  梁晖  刘明宏  张乾二 《化学学报》2004,62(18):1669-1677
摘要使用分子图形软件设计出多种CnP4^-(n=1-7)的结构模型,并进行B3LYP密度泛函几何构型优化和振动频率计算.最稳定的CP4^-和C2P3^-都是平面环状结构.最稳定的CnP4^-(n=3,5,7)结构在直碳链的一端连接1个磷原子且另一端是P3C的四元环的平面结构.最稳定的CnP4^-(n=4,6)结构在直碳链的一端连接1个磷原子且另一端是P3的三元环的锄状结构.直碳链可与平面环的磷原子生成大π键.大多数构型是由C2,C3,C4子结构以环状或链状方式组成的.碳原子与磷原子以交替方式排列的结构数量少、能量高.  相似文献   

5.
N8H8环状异构体的结构与稳定性的理论研究   总被引:1,自引:0,他引:1  
采用密度泛函理论的B3LYP方法在6-311 G**基组水平上对N8H8氮氢环状化合物可能存在的构型进行了几何优化,得到74种稳定异构体,应朋A然键轨道理论NBO和分子中的原子理论AIM分析了这些化合物成键特征和相对稳定性,G3MP2方法汁算了各异构体的能量及生成热.研究结果表明:N原子孤对电子到相邻的氮氮键的超共轭作用是影响氮氮键长变化的丰要因素;N8H8环状异构体的稳定性顺序为:六元环>七元环>八元环,五元环>三元环>四元环,六元环是这些N8H8环状异构体中最稳定的,最不稳定的是四元环,G19是所有环状异构体中能量最低的:M3能量最高,稳定性最差,A7密度最大.  相似文献   

6.
在CCSD(T)/6-311G(2df)//B3LYP/6-311G(d)水平上对SiC2S的各种可能异构体进行了研究。得到了其几何构型,精确能量和红外光谱。结果表明:SiC2S有8个稳定的异构体,能量最低的是直线型,电子态为^1∑的SiCCP1,其次是C2v对称性的S-cSiCC5,第三稳定的是直线型^1∑电子态异构体SSiCC2,第四稳定的是具有CC桥键C2v对称性的长菱形结构的.  相似文献   

7.
本文采用高精度的从头算方法计算了星际分子HC4N的电子结构和势能面。使用MP2/cc-pVTZ方法进行构象优化,共获得23个稳定单重态构型和21个过渡态。其中稳定结构包含线性构型,氢支链构型,以及含三元环,四元环和五元环的构型。进一步的精确单点能量计算在CCSD(T)/cc-pVTZ方法下进行,并采用G3(MP2)方法对比。通过结果分析得到HC4N单重态的5个热力学和动力学都比较稳定的的构型,分别为3个三元环结构R31,R32,R35,一个链状构型C1和一个氢支链构型B1。  相似文献   

8.
使用分子图形软件设计出多种CnP-4(n =1~ 7)的结构模型 ,并进行B3LYP密度泛函几何构型优化和振动频率计算 .最稳定的CP-4和C2 P-3 都是平面环状结构 .最稳定的CnP-4(n =3 ,5 ,7)结构在直碳链的一端连接 1个磷原子且另一端是P3 C的四元环的平面结构 .最稳定的CnP-4(n =4,6)结构在直碳链的一端连接 1个磷原子且另一端是P3 的三元环的锄状结构 .直碳链可与平面环的磷原子生成大π键 .大多数构型是由C2 ,C3 ,C4子结构以环状或链状方式组成的 .碳原子与磷原子以交替方式排列的结构数量少、能量高 .  相似文献   

9.
用从头计算方法在G2 (MP2 )水平上考察了LiSiF3 体系的各可能异构体以及这些异构体之间的异构化反应 .势能面上 4个极小值点的相对能量分别为 - 1 2 8.6 ,- 1 94.3,- 1 2 .7和 - 1 2 2 .8kJ/mol(以LiF和SiF2 的能量之和为零点 ) .含有 3个F Si F Li四元环具有C3v对称性的四元环构型能量最低 .其余的 3个构型异构化为四元环构型的过程中的势垒最高为 1 2 .5kJ/mol.  相似文献   

10.
采用密度泛函理论B3LYP/6-31G方法对C14H3中性和阳离子所有可能的构型、振动频率及热力学稳定性进行研究。基于目前的计算结果,C14H3和C14H3+最稳定的构型都是具有Cs对称的十四元环构型。如果构型里具有单叁键相互交替的聚炔烃结构,这个异构体就具有≈20cm-1的低频振动。C14通过加氢反应可以减小环内张力,使得十四元环能量降低,结构变得更加稳定。C14H3在温度低于1556K存在的可能性较大。  相似文献   

11.
采用B3LYP/6-311G(d),QCISD和CCSD(T)方法,对单重态和三重态SiNP体系的异构化进行了研究.在QCISD/6-311G(d)水平下,得到了7个稳定的异构体,它们由4个过渡态所连接,其中三重态线型异构体SiNP(31,3Σ1),单重态环状异构体SiNP(14,1A')和单重态线型异构体SiNP(11,1Σ)都具有较大的热力学及动力学稳定性.  相似文献   

12.
To verify the semiempirical‐type localized hydrogen bonding analysis methods introduced by us several years ago, the intramolecular oxygen and hydrogen relations within salicylaldehyde are selected as the major topic in this theoretical study. The B3LYP/6‐31G** density functional method is chosen for both the full‐optimization and frequency‐type calculations. Four ortho‐type planar conformal isomers are proven to be local minima, and four internal rotation transition states are found by QST3‐type calculation. The special interpretations of  CHO and  OH characteristic frequencies, energy barriers, and thermal chemical results are discussed. In the semiempirical scheme, both local hydrogen bonding population analysis and localized hydrogen bond energy breaking procedures are applied to five pairs of related oxygen and hydrogen atoms in each isomer. The explanations for the strong or weak hydrogen bonds and intra‐CHO repulsion relationships are discussed. ©1999 John Wiley & Sons, Inc. Int J Quant Chem 74: 395–404, 1999  相似文献   

13.
The lowest singlet along with selected high spin states of three isomers of Si4H4 have been investigated, using highly correlated wave functions in conjunction with a local pseudopotential approach. Tetrasilabicyclo[1.1.0]but-1(3)-ene 1 and tetrasilatetrahedrane 3a are established as true minima by means of the harmonic vibrational frequencies. The local minimum for tetrasilacyclobutadiene is not a planar 2a but a puckered conformer 2b . Isomer 1 was found to be the most stable of the investigated isomers lying 1.96 eV below 3a and 1.04 eV below 2b . A previously examined bond stretch isomer of tetrasilatetrahedrane 3b lies only 0.2 eV above isomer 1 . The Si? Si bond energies of 2b, 3a , and 3b are determined as 208, 124, and 228 kJ/mol, respectively. An explanation of the bonding situation in 1 is given.  相似文献   

14.
用分子图形软件设计出49种硫原子团簇Sn+(n=3~13)的结构,使用B3LYP密度泛函进行几何构型优化和振动频率计算,根据分子的总能量得出最稳定的同分异构体.在硫原子团簇正离子中,大部分原子为二配位成键.带有一、三配位的原子结构的总能量较高.部分最稳定硫原子团簇正离子的构型与最稳定的中性硫原子团簇的构型完全不同.  相似文献   

15.
SiCS分子结构及其稳定性的理论研究   总被引:5,自引:1,他引:4  
采用DFT,QCISD及CCSD(T)方法对单重态、三重态SiCS的分子体系势能面进行理论计算,在QCISD/6-311G(d)水平上得到由3个过渡态连接的5个稳定构型.经动力学及热力学分析均是稳定的三重态线型分子SiCS(31)、单重态线型分子SiCS(11)以及单重态的环状分子cSiCS(12).  相似文献   

16.
Forty four stationary points have been located on the lowest singlet and triplet potential energy surfaces of S(2)N(2). Ten minima and ten saddle points on the lowest singlet surface and eleven minima and thirteen saddle points on the lowest triplet surface were found. All saddle points were connected to minima or lower-order saddle points by following the intrinsic reaction coordinate. Renner-Teller effects in the linear isomers were studied by examining their bending curves. The S(2)N(2) polymerization mechanism was investigated by first locating the transition state corresponding to ring opening and then considering all species connected to it that are close in energy. The commonly accepted mechanism is problematic due to the number of species that would lead to dissociation to SN + SN. Other possible isomers that are consistent with the experimental evidence but do not connect to SN radicals in the dissociation limit were examined. A mechanism of polymerization to (SN)(x)() is proposed that involves excitation of the square planar singlet molecule to the triplet surface. The triplet species then undergoes a puckering, and polymerization occurs in a direction approximately perpendicular to the S(2)N(2) plane. Consideration of the predicted vibrational frequencies suggests the structure of the second isomer of S(2)N(2). This isomer has a trans-NSSN structure with a long SS bond. The energetics of trans-NSSN are consistent with the observed temperature effects in the dimerization of SN. Analysis of the bending curves of linear NSSN and NSNS indicates that trans-NSSN is the only isomer which has a small yet significant barrier to that dimerization.  相似文献   

17.
The geometries, harmonic vibrational frequencies, relative energetics, and enthalpies of formation of (CH(3)IO(3)) isomers and the reaction CH(3)O(2) + IO have been investigated using quantum mechanical methods. Optimization has been performed at the MP2 level of theory, using all electron and effective core potential, ECP, computational techniques. The relative energetics has been studied by single-point calculations at the CCSD(T) level. Methyl iodate, CH(3)OIO(2), is found to be the lowest-energy isomer showing particular stabilization. The two nascent association minima, CH(3)OOOI and CH(3)OOIO, show similar stabilities, and they are considerably higher located than CH(3)OIO(2). Interisomerization barriers have been determined, along with the transition states involved in various pathways of the reaction CH(3)O(2) + IO.  相似文献   

18.
The structures, energetics, dipole moments, vibrational spectra, rotational constants, and isomerization of singlet SiC4 isomers were explored using ab initio methods. Five types of isomers, a total of 11 minima, connected by 11 interconversion transition states, were located on the potential energy surface at the MP2/6-311G(d, p) level. More accurate energies were obtained at the G3(MP2) level. With the highest isomerization barrier, a C2v tetra-angular cone possesses the largest kinetic stability. The lowest-lying structure, linear SiCCCC is also highly kinetically stabilized. Besides, D2d bicyclic c-Si(CC)2, C2v five-membered ring c-SiCCCC, another C2v tetra-angular cone isomer and C3v trigonal bipyramid isomer are also considered to be kinetically stable, because their isomerization barriers are all over 10 kcal/mol. Other isomers cannot be kinetically stabilized with considerably low isomerization barriers. Investigation on the vibrational spectra, dipole moments, and rotational constants for SiC4 isomers are valuable for their detections in the interstellar space and laboratory.  相似文献   

19.
使用密度泛函理论,在B3LYP/6—311+G^*水平上,对金属富氮化合物N3MN3(M=Be,Mg,Ca)的两种几何结构进行了理论计算,并对得到的几何结构做了振动频率分析.结果表明,所有几何结构的振动频率都是正的,没有虚频存在,说明这类金属富氮化合物是热力学稳定的,当嵌入金属离子后,M—N之间开始表现出显著的离子性特征,由线形N3某团组成的N3MN3比由三角形N3某团组成的N3MN3更稳定.  相似文献   

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