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1.
用配位球壳势模型研究了络合分子中过渡金属离子光谱参量Dq与金属-配体间键长R的R-n律关系。结果表明指数n的变化趋势依赖于配位球壳半径R的增大或减小,在点电荷模型下n值将小于5且随R的减小而减小。在(MnF6)4-团簇键长的实验范围内(R=0.207nm←→0.214nm),理论计算值n=4.488与实验观测值n=4.45符合得很好。  相似文献   

2.
(Li3N)n(n=1-5)团簇结构与性质的密度泛函研究   总被引:1,自引:0,他引:1       下载免费PDF全文
用密度泛函理论(DFT)的杂化密度泛函B3LYP方法在6-31G*基组水平上对(Li3N)n(n=1-5)团簇各种可能的构型进行儿何结构优化,预测了各团簇的最稳定结构.并对最稳定结构的振动特性、成键特性、电荷特性等进行了理论研究.结果表明,(Li3N)n(n=1-5)团簇中N原子的配位数以4,5较多见,"Li-Li键长为0.210-0.259 nm,Li原子在桥位时Li-N键长为0.185-0.204 nm,Li原子在端化时Li-N键长为0.172-0.178nm;团簇中N原子的平均自然电荷为-2.01 e,Li原子的平均自然电荷为 0.67e;Li3N,(Li3N)5团簇有相对较高的动力学稳定性.  相似文献   

3.
合成了配合物 { [K(18- C- 6 ) ][K(H2 O) 2 ]} [Cd(CN) 4 ](1) ,并通过元素分析、红外光谱、单晶 X-射线衍射进行了结构分析。配合物属单斜晶系 ,空间群 P2 (1) / n。晶体学数据 :a=0 .936 5 3(18) nm,b=1.6 178(3) nm,c=1.74 81(3) nm,β=91.332 (3)°,V=2 .6 479(9) nm3 ,Z=4 ,Dcalcd=1.4 5 3g/ cm3 ,F(0 0 0 ) =12 0 8,R1=0 .0 317,w R2 =0 .0 5 6 7。配合物中 [K(18- C- 6 ) ],[K(H2 O) 2 ]和 [Cd(CN) 4 ]基团通过 K N键和 K —π相互作用形成三维网状结构  相似文献   

4.
何国芳 《光谱实验室》2003,20(5):716-718
合成了配合物 { [K(18- C- 6 ) ][K(H2 O) 2 ]} [Cd(CN) 4 ](1) ,并通过元素分析、红外光谱、单晶 X-射线衍射进行了结构分析。配合物属单斜晶系 ,空间群 P2 (1) / n。晶体学数据 :a=0 .936 5 3(18) nm,b=1.6 178(3) nm,c=1.74 81(3) nm,β=91.332 (3)°,V=2 .6 479(9) nm3 ,Z=4 ,Dcalcd=1.4 5 3g/ cm3 ,F(0 0 0 ) =12 0 8,R1=0 .0 317,w R2 =0 .0 5 6 7。配合物中 [K(18- C- 6 ) ],[K(H2 O) 2 ]和 [Cd(CN) 4 ]基团通过 K N键和 K —π相互作用形成三维网状结构  相似文献   

5.
用密度泛函理论(DFT)的杂化密度泛函B3LYP方法在6-31G*基组水平上对(Ca3N2)n(n=1-4)团簇各种可能的构型进行几何结构优化,预测了各团簇的最稳定结构.并对最稳定结构的振动特性、成键特性、电荷特性和稳定性等进行了理论分析.结果表明,(Ca3N2)n(n=1-4)团簇最稳定构型中N原子为3-5配位,Ca-N键长为0.231-0.251 mm,Ca-Ca键长为0.295-0.358 nm;N原子的自然电荷在-1.553 e--2.241 e之间,Ca原子的自然电荷在1.035e-1.445e之间,Ca和N原子间相互作用呈现较强的离子性,Ca3N2和(Ca3N2)3团簇有相对较高的动力学稳定性.  相似文献   

6.
(LiN3)n(n=1~2)团簇的密度泛函研究   总被引:2,自引:1,他引:1  
用密度泛函理论(DFT)的杂化密度泛函B3LYP方法在6-31G*基组水平上对(LiN3)n(n=1~2)团簇各种可能的构型进行几何结构优化,预测了各团簇的最稳定结构.并对最稳定结构的振动特性、成键特性和电荷布局等性质进行了理论研究.结果表明,LiN3团簇最稳定构型为直线构型;(LiN3)n(n=1~2)团簇中N-N键长在0.1146~0.1203 nm之间,N-Li键长在0.1722~0.1987 nm之间;Li原子的自然电荷在0.708 e~0.907 e之间,N原子的自然电荷在-0.896 e~0.208 e之间.  相似文献   

7.
一球形电容器的内外金属球壳间充满介电常数为ε的电介质.设该电容器外球壳的半径b 和使用时的最大工作电压 U_0已给定.请设计内球壳的半径使得内外球壳间加上电压 U_0时,内球壳表面附近的电场强度为最小,并计算这时该电容器贮存的电场能量. 每期一题本期解答解法一:设电容器内球壳的半径为 R,内外球壳间加上电压 U_0。时内球壳带有电量Q.根据高斯定理可得内外球壳间任一点处的场强大小为露:一旦一 (R。这表明,内球壳的半径R:÷时,内球壳表面附近处的场强西。最小。这时该电容器的电容为4疆s知c。;ib。4sreb贮存的电场能为-矽。=÷CUp 2srebU;解法二;设电容器内球壳的半径为也内外球壳间加上电压Un时,内外球壳分别带有电量g和一Q.根据球形电容器电容公式得 : ·9:CUo=百4JrebRUo内球壳表面附近处的场强大小为。9En=≥警=丽U丽ob£ 8 K‘拶一K,欲使童。为最小,令舞=。,解得。,R:旦2并在R=乓一处有—dZE—n>oZ dRz这表明,内球壳的半径R=.冬时,内球壳表面附近处的场强En最小.这时该电容器的电容为4vreb三’’c=—b_!b。4:ceb‘ 2贮存的电场能为 ,形。=妻CU:=2~ebU:  相似文献   

8.
合成了苯并 15冠 5与钯生成的配合物 :[K( B15C5) 2 ]2 [Pd( SCN) 4],并通过元素分析、红外光谱及 X射线单晶结构分析进行了表征。配合物为单斜晶系、空间群 P2 1/ n。晶体学数据 :a=1.2 0 4 30 ( 7) ,b=1.932 99( 10 ) ,c=1.56680 ( 9) nm,β=10 8.1190 ( 10 )°,V=3.4 665( 3) nm3,Z=2 ,F( 0 0 0 ) =142 4 ,R1=0 .0 50 0 ,w R2 =0 .1549。配合物由两个 [K( B15C5) ]+2 配阳离子和一个 [Pd( SCN) 4]2 -配阴离子组成。四个硫氰酸根的硫原子与钯原子配位 ,[Pd( SCN) 4]2 -为平面方形构型。 K+与 2个冠醚环的 10个氧原子成键而形成夹心型结构。两个苯并 15冠 5的苯环相对钾原子呈反式排列  相似文献   

9.
用分子轨道从头算方法,对CH自由基的基态(X2Π)和低激发态(a4Σ-)的光谱数据进行了计算.计算结果表明,在基态CH(X2Π)时,在QCISD(T)/6-311G (3df,3pd)水平上,计算所得的键长R=0.1120981nm,偶极矩μ=1.5891 Debye,ν=2845.43cm-1均与实验值相吻合,在B3PW91/6-311G (3df,3pd)理论水平上,计算的基态能量为-38.496143 Hartree,误差仅为0.22%;对低激发态CH(a4Σ-),使用含时的密度泛函方法(TDDFT)和大基组6-311 G(3df,3pd)计算所得的R=0.1094nm,垂直跃迁能量为0.926eV,均与实验结果有较好的吻合.  相似文献   

10.
合成了标题配位聚合物, 借助于元素分析、 红外光谱和X射线单晶衍射等分析方法确定了其晶体结构, 并测定了其TDA-DTA. 该配位聚合物属正交晶系, Pbcn空间群, 晶胞参数为a=2.201 2 nm(6), b=0.777 8 nm(2), c=1.972 4 nm(5), α=β=γ=90°, V=337.70 nm(15)3, Z=4, Dc=1.796 g·cm-3, μ=3.108 mm-1, F(000)=1 800, R1=0.043 0, wR2=0.056 0. 波谱分析结构显示, 通过己二酸配体羧基氧原子桥联Nd3+离子形成三维多孔结构, 4,4'-bpy通过氢键连接存在于孔道中.  相似文献   

11.
We have observed the rotational levels in the v = 2, 3, 5, 6, 7, and 8 vibrational manifolds of the 2(1)Delta(g) state of (7)Li(2) via the A(1)Sigma(+)(u) intermediate levels by DeltaLambda = 2 transitions. This violation of the DeltaLambda = 0, +/-1 selection rule is due to the interaction with the G(1)Pi(g) state. Band-by-band deperturbations of the G(1)Pi(g) approximately 2(1)Delta(g) (v(Pi), v(Delta)) = (11, 2), (12, 3), (15, 5), (16, 6), (18, 7), and (19, 8) bands have been performed. Deperturbed molecular constants and rotational-electronic interaction parameters are reported here. Copyright 2000 Academic Press.  相似文献   

12.
An analysis of the nu(17)-nu(4) difference bands near 800 cm(-1) of two isotopic species, (10)B(2)H(6) and (11)B(2)H(6), of diborane has been carried out using infrared spectra recorded with a resolution of ca. 0.003 cm(-1). In addition, the nu(17) band of (10)B(2)H(6) has been recorded and assigned. Since this band in (11)B(2)H(6) had already been studied (R. L. Sams, T. A. Blake, S. W. Sharpe, J.-M. Flaud, and W. J. Lafferty, J. Mol. Spectrosc. 191, 331-342 (1998)), it was possible to derive precise energy levels and Hamiltonian constants for the 4(1) vibrational states of both isotopic species. Copyright 2000 Academic Press.  相似文献   

13.
The N(p)N(n) scheme, which has been extensively applied to even-even nuclei, is found to be a very good benchmark for odd-even, even-odd, and doubly-odd nuclei as well. There are no apparent shifts in the correlations for these four classes of nuclei. The compact correlations highlight the deviant behavior of the Z = 78 nuclei and are used to deduce effective valence proton numbers near Z = 64 as well as to study the evolution of the Z = 64 subshell gap.  相似文献   

14.
Absolute line intensities of (12)C(16)O(2) are experimentally measured for the first time for the (00(0)3)(I) <-- (10(0)0)(II) band at 5687.17 cm(-1) and the (00(0)3)(I) <-- (10(0)0)(I) band at 5584.39 cm(-1). The spectra were obtained using a Bomem DA8 Fourier transform spectrometer and a 25-m base-path White cell at NASA-Ames Research Center. The rotationless bandstrengths at a temperature of 296 K and the Herman-Wallis parameters are S(0)(vib) = 6.68(30) x 10(-25) cm(-1)/(molecule/cm(2)); A(1) = 1.4(9) x 10(-4), and A(2) = -1.1(5) x 10(-5) for the (00(0)3)(I) <-- (10(0)0)(II) band and S(0)(vib) = 6.07(22) x 10(-25) cm(-1)/(molecule/cm(2)); A(1) = 5.2(1.5) x 10(-4) and A(2) = -4.0(7) x 10(-5) for the (00(0)3)(I) <-- (10(0)0)(I) band.  相似文献   

15.
N(2)-broadening coefficients have been measured for 30 lines of cyanogen chloride ((35)Cl(12)C(14)N) at room temperature in the P and R branches of the nu(1) band, using a tunable diode-laser spectrometer. These lines, with J values ranging from 0 to 55, are located in the spectral range 694-736 cm(-1). The collisional widths are obtained by fitting the spectral lines with a Voigt and a Rautian profile. The broadenings coefficients of (35)ClCN-N(2) have also been calculated from a semiclassical theory involving the atom-atom Lennard-Jones model for the intermolecular potential in addition to electrostatic interaction. Copyright 2000 Academic Press.  相似文献   

16.
A procedure is presented for the calculation of the double vibrational collision-induced absorption CO(2) (nu(3) = 1) + N(2) (nu(1) = 1) <-- CO(2) (nu(3) = 0) + N(2) (nu(1) = 0) on the basis of quantum lineshapes computed using an isotropic potential and dipole-induced dipole functions. The linestrengths and energies of the vibration-rotation transitions are treated explicitly for N(2), utilizing the HITRAN database for CO(2). The theoretical absorption profile is compared to recent experimental results. By narrowing the width of the individual lines contributing to the overall absorption profile relative to their values determined for N(2)-N(2) collision-induced absorption, excellent agreement between theory and experiment is obtained. Copyright 2000 Academic Press.  相似文献   

17.
The nu(5) fundamental (C-C stretching) of CH(3)CD(3) shows a resolved torsional structure, caused by perturbations due mainly to the linear dependence of the torsional potential barrier on the normal coordinate Q(5). We were able to analyze this structure and to assign vibration-rotation transition wavenumbers for all five torsional components, classified according to the symmetry species of the G(18)((3)) extended molecular group. The torsional splitting pattern is qualitatively similar to that of a nondegenerate vibrational state with an even number of excited torsional quanta v(6). Explorative calculations show that the main perturber system should consist of the torsional components of the vibrational ground state correlating with v(6)=4 in the high barrier limit. The strength of the perturbation on the E(r0) torsional components of nu(5) increases rapidly with r, the E(40) component being the most affected. The observed transition wavenumbers can be reasonably fitted by a simplified model containing independent effective vibration-rotation parameters for the five different torsional components of nu(5), for both CH(3)CD(3) and (13)CH(3)CD(3). The trend of the determined values of the effective vibrational wavenumbers and rotational parameters over the torsional components supports the proposed vibration-torsion interaction mechanism, responsible for the observed torsional splittings. A strong anomaly observed in the rotational intensity distribution of nu(5) is discussed. Copyright 2001 Academic Press.  相似文献   

18.
Using 0.002 cm(-1) resolution Fourier transform absorption spectra of an (17)O enriched ozone sample, an extensive analysis of the v(1)+v(3) bands of the (16)O(17)O(16)O and (16)O(16)O(17)O isotopomers of ozone has been performed for the first time. The experimental rotational levels of the (101) vibrational states were satisfactorily reproduced using a Hamiltonian matrix that takes into account the observed rovibrational resonances. More precisely, for (16)O(17)O(16)O, as for the other C(2v)-type ozone isotopomers, it was necessary to account for the Coriolis type resonances linking the (101) rotational levels with the levels of the (200) and (002) vibrational states and the Darling-Dennison interaction coupling the levels of (200) with those of (002). For the C(s)-type isotopomer, namely (16)O(16)O(17)O, as for (16)O(16)O(18)O and (16)O(18)O(18)O, it proved necessary to also account for an additional DeltaK(a)&equals+/-2 resonance involving the rotational levels from (101) and (002) (J.-M. Flaud and R. Bacis, Spectrochimica Acta Part A 54, 3-16 (1998)). Using a Hamiltonian matrix which takes these resonances explicitly into account, precise vibrational energies and rotational and coupling constants were deduced, leading to the following band centers: v(0)(v(1)+v(3))=2078.3496 cm(-1) for (16)O(17)O(16)O and v(0)(v(1)+v(3))=2098.8631 cm(-1) for (16)O(16)O(17)O. Copyright 2001 Academic Press.  相似文献   

19.
New experimental data on the nu(1) and nu(3) bands of (16)O(3) improving the value of absolute line intensities have been obtained. The intensities of 295 lines have been measured with an average accuracy between 2.5% and 3% and the rotational expansion of the transition moment operators for the nu(1) and nu(3) bands has been deduced. Finally, a complete listing of line intensities has been computed with an intensity cutoff of 1x10(-25) cm(-1)/molecule cm(-2). Copyright 2001 Academic Press.  相似文献   

20.
In high-purity YBa(2)Cu(3)O(7), the (weak-field) thermal Hall conductivity kappa(xy) is observed to increase a thousand-fold between 90 and 30 K. The inferred quasiparticle lifetime tau increases a hundred-fold starting below 90 K, in disagreement with a recent photoemission experiment. We show that kappa(xy) exhibits a specific scaling behavior below approximately 30 K. This scaling may bear on the issue of whether Landau quantization of the quasiparticle states occurs.  相似文献   

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