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1.
王俊芳  孙琪  王长生 《化学学报》2010,68(8):727-732
采用MP2方法研究 了甲酰胺-H2O2氧化乙烯制取环氧乙烷的反应机理. 优化得到了反应物、过渡态、中间体及产物的几何构型并计算了反应势垒. 研究结果表明: 没有水参与时, 反应需要通过四元环过渡态完成, 反应势垒很高, 在常温下难以进行; 有水参与时, 在水分子的协助下, 反应可以通过六元环过渡态完成, 反应势垒较低, 常温下反应容易进行.  相似文献   

2.
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   

3.
HMX晶体和HMX/F2311 PBXs力学性能的MD模拟研究   总被引:1,自引:0,他引:1  
肖继军  黄辉  李金山  张航  朱伟  肖鹤鸣 《化学学报》2007,65(17):1746-1750
用分子动力学方法, 在295 K NVT系综和COMPASS力场下, 对环四甲撑四硝胺(HMX)晶体和F2311沿HMX (001), (010)和(100)晶面所构成PBXs模型的力学性能进行模拟研究. 结果表明, 加入F2311降低了HMX的刚性, 增强了它的延展性. 在HMX (100)面上添加F2311对提高体系的延展性较显著. 为考察温度对力学性能的影响及其机理, 在245~445 K范围完成对HMX (100)/F2311 PBX的MD模拟. 力学分析表明, 随温度增加HMX (100)/F2311的延展性呈抛物线变化规律, 归因于F2311分子链的运动及其构象随温度的变化.  相似文献   

4.
以硫醇为螯合剂, 在溶剂热条件下合成了两种层状硫代亚碲酸盐KAgTeS3 (1)和RbAgTeS3 (2). X射线单晶解析表明, 1和2是类质同晶化合物. 在晶体结构中, 银硫四面体通过共用顶点形成无限的平行链, 在相邻链中银硫四面体取向相反, 这些链与链由三角锥配位的碲互相连接形成阴离子层状结构, 阳离子在阴离子层间. 1的结晶学数据为: Mr=370.75, P21/c, a=0.73639(6) nm, b=1.06468(8) nm, c=0.85203(6) nm, β=106.4640(10)°, V=0.64062(8) nm3, Z=4, R(F)=4.44%, wR(F2)=11.66%. 2的结晶学数据: Mr=417.12, P21/c, a=0.75531(12) nm, b=1.07076(7) nm, c=0.8583(2) nm, β=106.497(6)°, V=0.66558(19) nm3, Z=4, R(F)=6.00%, wR(F2)=15.43%. DSC及紫外-可见漫反射光谱研究表明, 这两种化合物为半导体, 并具有很好的热稳定性.  相似文献   

5.
采用等温溶解平衡法研究了五元体系Na, K, Mg2+//Cl, NO3-H2O在298.16 K、氯化钠饱和时各盐的溶解度和饱和溶液的物化性质(密度, 电导率)以及四元体系Na, Mg2+//Cl, NO3-H2O的相平衡关系. 研究表明: 在298.16 K, 氯化钠饱和时该五元体系溶解度相图由六个结晶区、九条单变量溶解度曲线和四个零变量点构成, 六个结晶区分别对应于NaNO3+NaCl, KNO3+NaCl, KCl+NaCl, Mg(NO3)2•6H2O+NaCl, MgCl2•6H2O+NaCl和复盐KCl•MgCl2•6H2O+NaCl; 在298.16 K时, 该四元体系的相图由四个结晶区、五条单变量溶解度曲线和二个零变量点构成, 四个结晶区分别对应于NaNO3, NaCl, Mg(NO3)2•6H2O, MgCl2•6H2O.  相似文献   

6.
以硫醇为螯合剂, 在溶剂热条件下合成了两种层状硫代亚碲酸盐KAgTeS3 (1)和RbAgTeS3 (2). X射线单晶解析表明, 12是类质同晶化合物. 在晶体结构中, 银硫四面体通过共用顶点形成无限的平行链, 在相邻链中银硫四面体取向相反, 这些链与链由三角锥配位的碲互相连接形成阴离子层状结构, 阳离子在阴离子层间. 1的结晶学数据为: Mr=370.75, P21/c, a=0.73639(6) nm, b=1.06468(8) nm, c=0.85203(6) nm, β=106.4640(10)°, V=0.64062(8) nm3, Z=4, R(F)=4.44%, wR(F2)=11.66%. 2的结晶学数据: Mr=417.12, P21/c, a=0.75531(12) nm, b=1.07076(7) nm, c=0.8583(2) nm, β=106.497(6)°, V=0.66558(19) nm3, Z=4, R(F)=6.00%, wR(F2)=15.43%. DSC及紫外-可见漫反射光谱研究表明, 这两种化合物为半导体, 并具有很好的热稳定性.  相似文献   

7.
用DFT的B3LYP方法在6-31G(d)基组的水平上, 对闭式多面体簇合物(HAlNH)12及其内含式X@(HAlNH)12和外接式X(HAlNH)12 (X=F, Cl, Br, O2-, S2-, Se2-)复合物的结构进行了构型优化和能量计算, 并讨论了几何构型、自然键轨道(NBO)、振动频率、能量参数及NMR数据与结构的关系, 最后得到复合物结构的稳定性信息, 具有Th对称性的X@(HAlNH)12 (X=F, Cl, Br, S2-, Se2-)复合物和具有C3对称性的O2-@(HAlNH)12复合物为内含式的基态结构, 从能量角度分析, 内含式复合物比外接式复合物的结构稳定.  相似文献   

8.
张彩云  武海顺 《化学学报》2005,63(11):979-984
用DFT的B3LYP方法在6-31G(d)基组的水平上, 对闭式多面体簇合物(HAlNH)12及其内含式X@(HAlNH)12和外接式X(HAlNH)12 (X=F, Cl, Br, O2-, S2-, Se2-)复合物的结构进行了构型优化和能量计算, 并讨论了几何构型、自然键轨道(NBO)、振动频率、能量参数及NMR数据与结构的关系, 最后得到复合物结构的稳定性信息, 具有Th对称性的X@(HAlNH)12 (X=F, Cl, Br, S2-, Se2-)复合物和具有C3对称性的O2-@(HAlNH)12复合物为内含式的基态结构, 从能量角度分析, 内含式复合物比外接式复合物的结构稳定.  相似文献   

9.
采用B3LYP/6-31G*方法, 对(XY)12 (X═B, Al; Y═P)笼状团簇的同分异构体进行优化, 筛选出能量最低的构型. 讨论它们的几何构型、HOMO-LUMO能隙、生成焓、核独立化学位移(NICS)和自由能. 得到(BP)12和(AlP)12团簇的最稳定构型均为具有Th对称性的四、六元环组成的笼, 亚稳态结构中含有五元环.  相似文献   

10.
报道了2个基于四甲基取代六元瓜环的三明治型四核稀土簇合物,[Ln4(μ3-OH)4(μ2-OH)2(H2O)4(NO3)2(TMeQ[6])2]·(NO3)4·26H2O(Ln=Dy,1;Ln=Tb, 2)。晶体结构分析显示2个簇合物包含2个四甲基取代瓜环夹心的四核稀土立方烷结构,[Ln4(μ3-OH)4]8+。磁性研究显示化合物1显示了慢磁弛豫行为。由于六元瓜环配体可以有效的传递能量给稀土铽离子,化合物2具有较好的发光性能。  相似文献   

11.
To gain insight into the structures and stability of F4F6 polyhedrons formed by squares and hexagons, a density functional theory study was performed on all isomers of F4F6 polyhedrons with sizes from 8 to 60. The calculated results demonstrate that the six squares tend to isolate from each other, i.e. these F4F6 polyhedrons obey the isolated square rule. Those isomers with fewer B44 bonds (square-square adjacencies) are more stable than those with more B44 bonds, i.e. they obey square adjacency penalty rule. Both of the two rules in F4F6 polyhedrons are in the same status as the isolated pentagon rule and pentagon adjacency penalty rule in F5F6 fullerenes and can be used to screen the lowest energy isomers of F4F6 polyhedrons as IPR and PAPR do in classic fullerenes. Structural analysis demonstrates that the pyramidalization of carbon atoms at the square-square adjacencies determines the stability of corresponding structures. Electronic Supplementary Material  Supplementary material is available for this article at and is accessible for authorized users. Supported from Southwest University, China (Grant No. SWNUB2005002) and Key Laboratory of the Three Gorges Reservoir Region’s Eco-Environment within Ministry of Education, Chongqing University (Grant No. KLVF-2007-5)  相似文献   

12.
To gain an insight into the structures and stability of F4F6-(BN)n polyhedrons with alternation of B and N atoms, a density functional theory study was performed on all isomers of F4F6-(BN)n polyhedrons with n between 10 and 22. The calculation results demonstrate that the lowest energy isomers do not contain B44 bonds (the bonds shared by two squares) and the energies of those isomers containing B44 bonds increase with the number of B44 bonds linearly, indicating that the energetically favored structures of F4F6-(BN)n polyhedrons satisfy the isolated square rule and square adjacency penalty rule. The structural analysis reveals that the stability is determined by the pyramidalization of B and N atoms at the square–square fusion. The binding energy is fitted to the numbers of edges and a model is proposed for predicting the relative stability of these B–N polyhedral molecules.  相似文献   

13.
The structures and stability of F4F6‐(BN)n polyhedrons (n = 20–30) with the alternation of B and N atoms were studied with DFT method. The calculation results reveal that the atoms at square–square fusions with large pyramidalization angles are remarkably extruded out of the surfaces of (BN)n polyhedrons. The energetically favorable isomers do not contain square–square bonds and the energies of those isomers containing square–square bonds increase with the number of square–square bonds linearly, demonstrating that the energetically favorable structures of F4F6‐(BN)n polyhedrons satisfy the isolated square rule and square adjacency penalty rule. The atom pyramidalization determines the stability of the isomers. The binding energy is fitted to the numbers of vertices formed from different faces and a model is proposed to predict the relative stability of these polyhedral molecules. © 2009 Wiley Periodicals, Inc. Int J Quantum Chem, 2011  相似文献   

14.
采用密度泛函方法对四、六元环组成的所有可能的的23个笼状B28N28结构进行了理论计算和拓扑学特性研究, 用三个指标N4x4(x=0, 1, 2)来描述相邻四元环间的键联类型, 结果发现B28N28笼的相对能量随N4x4值的增大而增大, 且N404对稳定性的影响起主导作用. 这一简单的拓扑学标准可以给出所有四六结构B28N28异构体的大致能量顺序, 并从ISR结构中挑选出能量较低的结构, 因此有望用于挑选大尺寸氮化硼团簇的热力学稳定结构.  相似文献   

15.
对单个多面体硼烷(Polyhedral boranes)已有较多的理论研究,由多个多面体通过共用一个或多个顶点而构成的稠合型硼烷(Macropolyhedral borones),具有多种多样的结构类型,并已被大量合成出来,目前对稠合型硼烷结构及成键特性的理论研究尚不充分,它们不能再以简单的closo,nido和arachno分类,Wade规则也不再适于解释其结构,理论上各种电子计数规则已有不少报道,对预言和发现新的分子十分重要。  相似文献   

16.
The weak-link approach has been employed to synthesize a series of bimetallic Cu(I) macrocycles in high yield. Addition of phosphinoalkylether or -thioether ligands to [Cu(MeCN)4]PF6 produces "condensed" intermediates, [mu-(1,4-(PPh2CH2CH2X)2Y)2Cu2][PF6]2 (X = S, O; Y = C6H4, C6F4), containing strong P-Cu bonds and weaker O-Cu or S-Cu bonds. The weak bonds of these intermediates can be cleaved through ligand substitution reactions to generate macrocyclic structures, [mu-(1,4-(PPh2CH2CH2X)2Y)2(Z)nCu2][PF6]2 (X = S, O; Y = C6H4, C6F4; Z = pyridine, acetonitrile, diimines, isocyanide) in nearly quantitative yields. The incorporation of tetrahedral Cu(I) metal centers into these macrocycles provides a pathway to complexes that differ from analogous d8 square planar macrocycles generated via this approach in their increased air stability, small molecule reactivity, and ability to form multiple structural isomers. Solid-state structures, as determined by single-crystal X-ray diffraction studies, are presented for condensed intermediates and an open macrocycle  相似文献   

17.
The unexplored carbon rich cationic closo carboranes, C3Bn?3Hn+1 (n=5, 6, 7, 10, 12) are investigated theoretically. The position isomers were calculated at the B3LYP/6‐31G* level, and the charge distribution in the cluster is estimated by NBO analysis. The criterion of ring‐cap orbital overlap compatibility along with the number of B? C, C? C, and B? B bonds help in explaining the stability order in each category. The most stable isomer is the one with maximum ring‐cap orbital overlap and largest number of B? C bonds. The order of relative stability among the trigonal bipyramid is 1c > 1b > 1a ′, where the stability is proportional to the number of CH caps over the small three‐membered ring. The C3B3H6+ isomer with the one allyl C3 group ( 2b ) is more favorable than the one with a cyclopropenyl group ( 2a ). Among the C3B4H7+ isomers the stability order is 3e > 3d > 3c > 3b > 3a , which mostly depends on the ring‐cap orbital overlap. In the bicapped square antiprism (4) where there is large number of isomers, the order follows the rule of ring cap compatibility and the number of B? C bonds. The order of 5e > 5d > 5c > 5b > 5a obtained from the calculations is in perfect agreement with the above sited rules. Equations (1) – (5) devised for estimating the stability of isomers of C3Bn?3Hn+ indicate an increase in stability with cage size. The mono‐positive charge of the isomers is distributed throughout the cage, making them suitable candidates as weakly electrophillic cations. © 2001 John Wiley & Sons, Inc. J Comput Chem 22: 1542–1551, 2001  相似文献   

18.
用 CNDO/2方法在 586微机上计算了 C57X3C56X4(X=B、N、P)的 234个位置异构体的电子结构。在C57X3(X=B、N、P)位置异构体中,C57X3(1,2,9)(X=B、N、P)分别是最稳定的。对于C56X4(X=B、N、P)位置异构体,C56B4(1,2,9,8),C56N4(1,2,9,12)和C56P4(1,2,9,12)分别是最稳定的,但稳定性都比C60差。其氧化或还原性都比 C60好,将它们和 C60比较,与 X相距一个或两个键的 C原子电荷密度增加或减少较多,其余电或亲核反应性增加;X与 X,X与 C原子之间 Wiberg Order都减少较多,其键的强度削弱;邻近杂原子的 C与 C原子之间 Wiberg Order减少或增加很少,其键的强度稍有削弱或增强。  相似文献   

19.
Various isomers of macropolyhedral borane ions [B20H18]n (n = 0, -2, -4) are investigated by using the density functional theory methods at RB3LYP/6-31+G* and RB3LYP/6-31G* levels to obtain the optimized geometries, harmonic vibrational frequencies, electron structures, and the stability order. The calculated results show that optimized bond lengths are consistent with the available experimental values and the natural populations, taking [a2 -B20H18]4- (4) as an example, are also in agreement with NMR spectra. The calculated vibrational frequencies are all real, so all of these isomers could be stable, among which [a2 -B20H18]2- (3) and [a2 -B20H18]0 (7) are considered for the first time in this paper. On the basis of the contour maps of molecular orbitals, the delocalized characteristic of molecular orbitals and the possible redox mechanism of these ions are also discussed. Moreover, the analysis on counting of skeletal bonding electrons shows that the isomers (1)-(6) obey the electronic requirement predicted by the mno rule, whereas the newly predicted isomer (7) does not match the mno rule.  相似文献   

20.
The reactions of the 16e half-sandwich complexes [Cp*M[S2C2(B10)H10)]] (1: M=Rh; 2: M = Ir) and [eta6-(4-isopropyltoluene)M[S2C2(B10H10)] (3: M=Ru; 4: M=Os) with both methyl acetylene monocarboxylate and dimethyl acetylene dicarboxylate were studied in order to obtain more evidence for B-H activation, ortho-metalation, and B(3,6)-substitution of the carborane cluster. In the case of rhodium, the reaction of 1 with methyl acetylene monocarboxylate led to new complexes after twofold insertion into one of the Rh-S bonds (7), and twofold insertion together with B-substitution at the carborane cage (8). In the case of iridium, the reactions of 2 with methyl acetylene monocarboxylate gave two geometrical isomers 10 and 11, in which the alkyne is inserted into one of the Ir-S bonds, followed by hydrogen transfer from the carborane via the metal to the former alkyne and formation of an Ir-B bond. Only one type each (12 and 13) of these isomers was obtained from the reactions of the ruthenium and osmium half-sandwich complexes 3 and 4. The 16e starting materials 1-4 reacted with dimethyl acetylene dicarboxylate at room temperature to give the complexes 14-17, respectively, which are formed by addition of the C=C bond to the metal center and insertion into one of the metal-sulfur bonds. The proposed structures in solution were deduced from NMR data (1H, 11B, 13C, 103Rh NMR), and X-ray structural analyses were carried out for the rhodium complexes 7 and 8.  相似文献   

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