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1.
对1,3-二氮杂薁类衍生物采用密度泛函理论(DFT)在B3LYP/6-31G(d)的水平上进行了几何构型的全优化, 在此基础上探讨了分子结构和前线分子轨道能量等性质的变化规律, 采用含时密度泛函理论(TD-DFT)计算了分子的电子跃迁性质, 采用二维平面图和三维立体图来直观表示激发态的性质, 研究分子内电子转移特性. 跃迁密度矩阵的二维等高线图反映了电子-空穴相干性, 三维跃迁密度图反映了跃迁偶极矩的方向和强度, 三维电荷差异密度图说明了激发过程中分子内电子转移性质.  相似文献   

2.
采用HF和密度泛函理论中的B3LYP和PBE0方法,在7个不同的基组下优化得到了4-氨基-1,8-萘二酰亚胺(ANI)的基态几何构型,用CIS/6-31+G(d)方法得到第一激发态几何构型,频率分析无虚频.在此基础上运用HF-CIS,TD-B3LYP和TD-PBE0方法研究了在气相及DMSO,DMF,MeCN,THF,CHCl3和EtOH溶剂中ANI的前线轨道及电子光谱.结果表明,HOMO→LUMO的跃迁是π→π*跃迁.随溶剂极性的增加,其最大吸收和荧光波长红移.用TD-B3LYP/6-31+G(d)方法得到的溶剂中ANI的吸收光谱计算值与实验值吻合性较好,但荧光光谱计算值与实验值有较大差异.进一步经线性拟合校正,ANI在非质子溶剂中的计算值与实验值能较好地吻合.计算显示激发态ANI具有较大的偶极矩,与解释相关荧光分子探针的光诱导电子转移方向选择性现象的光生电场理论一致.  相似文献   

3.
8-羟基喹啉铝光电性质的Ab initio和DFT研究   总被引:10,自引:3,他引:7  
利用abinitioHF和密度泛函理论B3LYP等方法,对金属有机配合物8-羟基喹啉铝(AlQ3)进行几何结构优化,探索分子内部电子跃迁的机理.结果表明,电子从基态跃迁到低激发态时主要为π-π*跃迁;电荷从含氧的苯酚环转移至含氮的吡啶环上,包括两环之间C→C转移和O→N转移,与金属离子关系不大.考虑到配体对发光性质的贡献,进一步设计了3种AlQ3的衍生物.  相似文献   

4.
针对氨基硫脲和香草醛亲核加成-缩合反应的反应物和生成物,用量子化学密度泛函方法在B3LYP/6-31G水平上进行几何优化,通过Mulliken电荷分析推测出香草醛具有较高的亲核加成反应活性.对优化后的构型进行振动分析,得到不同温度下反应物和生成物的热力学性质,据此计算出相应温度下的反应焓变、吉布斯自由能变和平衡常数.实验表明,在298K~1000K内,氨基硫脲与香草醛的亲核加成-缩合反应是一个放热反应,吉布斯自由能变成负值,平衡常数很大,说明反应在温和条件下即能自发进行.在此基础上采用含时密度泛函方法(TD-DFT)计算了分子激发态的电子跃迁能,得到对应激发态的吸收波长,所得结果与文献值基本吻合.  相似文献   

5.
采用密度泛函的B3LYP和单激发组态相互作用(CIS)方法分别对基态和第一、第二单重激发态(S1和S2)结构进行优化,均采用6-31G(d)基组.在优化的基态和第一单重激发态的结构基础上,用含时密度泛函理论(TD-DFT),成功模拟了7-甲氧基香豆素-3-甲酰二乙醇胺的吸收光谱和荧光发射光谱,并用极化连续模型考虑了溶剂的影响.利用前线轨道、电荷密度差(CDD)和态密度(DOS)图分析了电子跃迁的特性.计算结果与实验结果吻合得很好.该量子计算方法对此类化合物的定性和定量研究是有效的.  相似文献   

6.
苯乙烯基-β-萘噻唑染料电子光谱的含时密度泛函研究   总被引:6,自引:0,他引:6  
对苯乙烯基-β-萘噻唑染料系列用量子化学密度泛函方法(DFT)在B3LYP/6-31g水平上进行了几何构型全优化, 探讨了苯环对位上不同的取代基CH3, OCH3, N(CH3)2, 3,4-OCH2O, NO2等对分子电荷转移、前线轨道能量和电子光谱等性质的影响规律, 在此基础上采用含时密度泛函方法(TD-DFT)计算了分子第一激发态的电子跃迁能, 得到最大吸收波长λmax. 计算结果表明, 上述5种取代基的引入, 均导致最大吸收波长红移. 与实验λmax结果相比, 理论计算最大相对偏差为0.0501, 最小相对偏差为0.0085.  相似文献   

7.
采用ab initio HF理论的组态相关CIS方法和连续溶剂模型PCM, 分别在6-311+G*和6-31G水平上研究了6-甲基-4-羟基嘧啶单体及二聚体激发态质子转移的异构化反应; 对其反应势能面的研究发现, 单体基态和激发态的异构化反应一起可以形成四能级的分子电子体系, 而二聚体的却不能, 由此解释了单体和二聚体的紫外吸收光谱和荧光发射光谱均对应于酮式构型的原因. 利用混合含时密度泛函TD/MPW1PW91理论方法在溶剂存在下计算了标题物质的紫外吸收光谱和荧光发射光谱.  相似文献   

8.
采用密度泛函理论(DFT),在PBE0/6-31+G(d)-LANL2DZ水平下,对两种含有不同取代基的4-氨基安替比林席夫碱-Pt(Ⅱ)配合物A和B的几何构型、前线分子轨道及其分布特征进行理论计算.在优化构型的基础上,用含时密度泛函理论(TD-DFT)在相同水平下对上述配合物进行电子吸收光谱研究.计算还考虑了二氯甲烷溶剂对电子结构和光谱性质的影响.结果表明,配合物A和B的最强吸收波长分别来自于HOMO→LUMO和HOMO-5→LUMO的跃迁,以上跃迁存在明显的分子内电荷转移的特征.此外,在4-氨基安替比林配体上引入强的给电子基团-N(CH3)2,配合物A的最大吸收波长相对于配合物B发生了红移现象.  相似文献   

9.
采用量子化学方法研究了2种新型有机染料分子P1和P4,几何优化和基态性质计算采用B3LYP密度泛函,基组为6-311G(d).由于P1和P4分子中分别存在2个对称的吸电子基团,所以2个染料分子的电子结构存在明显的特点:2个紧邻简并最低空轨道(LowestUnoccupied Molecular Orbital,LUMO)轨道.P1和P4最高占据轨道(Highest Occupied Mo-lecular Orbital,HOMO)到LUMO轨道的跃迁能级差分别为2.79和3.26eV.同时,采用含时密度泛函方法(Time-Dependent Density Functional Theory,TDDFT)研究了2个染料分子的激发态性质.通过电荷差异密度理论方法(Charge Different Density,CDD)直观的展示了分子内电荷转移的现象.对于P1,电荷转移的方向是从苯甲酸基团到2个二氰乙烯基噻吩苯基团;对于P4,电荷是由2个二氰乙烯基联苯基团基团向苯甲酸基转移.  相似文献   

10.
氰乙基对几种芳胺结构和光谱的影响   总被引:1,自引:0,他引:1  
采用量子化学中密度泛函理论(DFT)的B3LYP方法分别用6-31G*和6-311+G*基组对苯胺、对氯苯胺和对甲苯胺及其氰乙基衍生物的几何构型进行全优化, 探讨了氨基上氰乙基的引入对分子电荷转移、前线轨道能量和电子光谱等性质的影响规律. 在此基础上采用含时密度泛函方法(TD-DFT)计算了分子第一激发态的电子跃迁能, 得到最大吸收波长λmax. 计算结果表明, 氨基上氰乙基的引入, 对前线分子轨道组成影响虽然小, 但使得最大吸收波长红移, 与实验值λmax有较好的一致性, 发现该类物质主要吸收光谱源于分子内的π→π*的电子跃迁.  相似文献   

11.
AlPO4-5分子筛模板剂的量子化学计算   总被引:4,自引:0,他引:4  
以23种有机分子作为模板剂用于AlPO4-5分子筛的合成,利用分子图形技术研究这些有机分子的形状和尺寸,采用量子化学PM3方法研究这些有机分子的电子性质,计算它们与AlPO4-5分子筛骨架模型簇之间的相互作用能。结果表明,量子化学计算数据可以作为寻找合成AlPO4-5分子筛新型模板剂时的重要参考依据。  相似文献   

12.
Theoretical study on the geometries and electronic properties of new conjugated compounds based on thiophene and phenylene was carried out. The theoretical ground-state geometries and electronic structures of the studied molecules were obtained using the density functional theory (DFT) method at B3LYP level with 6-31G(d) basis set. The electronic properties were determined by ZINDO/s, CIS/3-21G(d), and TD//B3LYP/3-21G(d) calculations performed on the B3LYP/6-31(d) optimized geometries. The effects of the ring structure and the substituents on the geometries and electronic properties of these materials were discussed. The results of this study indicate how the electronic properties can be tuned by the backbone ring or side group and suggest these compounds as good candidates for opro-electronic applications.  相似文献   

13.
Theoretical study on the geometries and electronic properties of new conjugated compounds based on thiophene and phenylene was carried out. The theoretical ground-state geometries and electronic structures of the studied molecules were obtained using the density functional theory (DFT) method at B3LYP level with 6-31G(d) basis set. The electronic properties were determined by ZINDO/s, CIS/3-21G(d), and TD//B3LYP/3-21G(d) calculations performed on the B3LYP/6-31(d) optimized geometries. The effects of the ring structure and the substituents on the geometries and electronic properties of these materials were discussed. The results of this study indicate how the electronic properties can be tuned by the backbone ring or side group and suggest these compounds as good candidates for opto-electronic applications.  相似文献   

14.
This study deals with the identification of a title compound, 3-[(2-morpholinoethylimino)methyl]benzene-1,2-diol by means of quantum chemical calculations. The optimized molecular structures, vibrational frequencies and corresponding vibrational assignments, thermodynamic properties, charge analyses, nuclear magnetic resonance (NMR) chemical shifts and ultraviolet-visible (UV-vis) spectra of the title molecule in the ground state were evaluated using density functional theory (DFT) with the standard B3LYP/6-311++G(d,p) method and basis set combination for the first time. Theoretical vibrational spectra of the title compound were interpreted with the aid of normal coordinate analysis based on scaled density functional force field. The results show that the obtained optimized geometric parameters (bond lengths, bond angles and bond dihedrals) and vibrational frequencies were observed to be in good agreement with the available experimental results. Moreover, the calculations of the electronic spectra, (13)C and (1)H chemical shifts were compared with the experimental ones. Furthermore, we not only simulated the frontier molecular orbitals (FMO) and molecular electrostatic potential (MEP) but also determined the transition states and energy band gaps, as well. It was found that charge analyses supported the evidences of MEP. Infrared intensities and Raman activities were also reported.  相似文献   

15.
Structural and electronic properties of C@C60 were studied via Hartree–Fock self-consistent field (SCF) and density functional B3LYP levels of theory with the STO-3G, 6-31G(d) and 6-31G(d, p) basis sets. Both singlet and triplet were considered. The triplet structure with C on the center of the C60 cage was proved to be global minimum on the C@C60 molecular potential energy surface. The calculated HOMO-LUMO gaps as well as the electron affinity (EA) and the ionization potential (IP) were also presented as an indicator of the kinetic stability.  相似文献   

16.
A theoretical model for calculating molecular structure parameters of a series of diphenylanthrazolines with different substitutes by using density functional theory B3LYP/6-31G* is presented. In addition, a theoretical characterization for molecular structure without the substitute radical (4,9-diphenylanthrazoline) was performed. Furthermore, the highest occupied molecular orbitals and lowest unoccupied molecular orbitals, gap energy, ionization potential, and electronic affinity were obtained by means of density functional theory calculations and compared with experimental data. The results showed a decrease in gap energies when incorporating radicals to the base anthrazoline structure.  相似文献   

17.
The FT-IR and FT-Raman spectra of 1-bromo-3-fluorobenzene (C6H4FBr) molecule have been recorded using Bruker IFS 66 V spectrometer in the range of 4000–100 cm−1. The molecular geometry and vibrational frequencies in the ground state are calculated using the DFT (B3LYP, B3PW91 and MPW91PW91) methods with 6-31++G(d,p) and 6-311++G(d,p) basis sets. The computed values of frequencies are scaled using a suitable scale factor to yield good coherence with the observed values. The isotropic DFT (B3LYP, B3PW91 and MPW1PW91) analysis showed good agreement with the experimental observations. Comparison of the fundamental vibrational frequencies with calculated results by B3LYP methods. The complete data of this molecule provide the information for future development of substituted benzene. The influence of bromine and fluorine atom on the geometry of benzene and its normal modes of vibrations has also been discussed. A study on the electronic properties, such as absorption wavelengths, excitation energy, dipole moment and frontier molecular orbital energies, was performed by time dependent DFT (TD-DFT) approach. The electronic structure and the assignment of the absorption bands in the electronic spectra of steady compounds were discussed. The calculated HOMO and LUMO energies show that charge transfer occurs within the molecule. On the basis of the thermodynamic properties of the title compound at different temperatures have been calculated in gas phase, revealing the correlations between standard heat capacities (C) standard entropies (S), standard enthalpy changes (H) and temperatures.  相似文献   

18.
环己硅烷类液晶化合物的量子化学研究   总被引:2,自引:0,他引:2  
运用AM1和PM3两种SCF-MO方法,通过能量梯度全优化计算,给出20种环己硅烷类(苯基乙烷系)液晶化合物的稳定几何构型、电子结构和基本性质.联系有机电子结构理论进行了细致的讨论.  相似文献   

19.
用分子力学方法(MM)对间位聚苯(PMP)及其衍生物的势能随扭曲角(f)变化规律进行了研究.结果表明,势能曲线上出现四个能量最小值,分别对应于扭曲角f ≈-135°,-45°,45°,135°.进一步对以上构建的全部PMP及其衍生物用分子力场Drieding 2.11进行了分子力学能量优化.最终得到主要的四种构象,其中螺旋构象的能量最低,而且以螺旋构象为优势分布构象.在真实条件下,PMP及其衍生物长链可能采取以上四种构象的混合片段组成.用量子化学方法(GGA-DFT)研究了PMP及其衍生物的电子结构能隙随相邻苯环之间的扭曲角的变化趋势.用量子化学半经验方法(AM1)对四种构象分别进行几何优化,优化结果与分子力学优化结果基本一致,并运用混合密度泛函方法(DFT/B3LYP/6-31G)进一步对AM1优化的构象结构进行更精确的电子结构能隙计算.最终得出影响间位聚苯及其衍生物电子结构能隙的主要因素为连接苯环间扭曲角的大小.  相似文献   

20.
In this study, we investigate the structural and spectroscopic properties of the thienyl chalcone derivative 3-(5-Bromo-2-thienyl)-1-(4-nitrophenyl)-prop-2-en-1-one, C13H8BrNO3S, using nuclear magnetic resonance (1H and 13C NMR), UV–vis and Fourier transform infrared spectroscopy (FTIR) and Raman spectroscopy at room conditions combined with density functional theory (DFT) and time-dependent DFT (TD-DFT) augmented with B3LYP/6-311G(d,p) and CAM-B3LYP/6-311G(d,p) basis sets, yielding valuable information on the molecular conformational preferences, vibrational assignments, optical properties and electronic transitions. The vibrational mode assignments of the most stable conformer of C13H8BrNO3S are discussed based on potential energy distribution (PED) analysis and establishing a comparison with a similar chemical structure. The temperature dependence on the Raman spectra of the C13H8BrNO3S shows a reversible phase transition in the range 443–443 K pointed out by the discontinuity in the dω/dT of bands in the external and internal modes region. The UV–vis spectrum of the C13H8BrNO3S indicates a semiconductor behavior with an optical band gap of 2.6 eV, corresponding to the predicted value of 3.42 eV assigned as the electronic transition from the highest occupied molecular orbital (HOMO) to the lowest unoccupied molecular orbital (LUMO). TD-DFT calculations reveal that the electron donor and acceptor group substitution on the 1-phenyl-3-(thiophen-2-yl)prop-2-en-1-one affects its absorption and nonlinear activity.  相似文献   

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