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1.
运用密度泛函理论(DFT)B3LYP方法和abinitioHF单激发组态相互作用(CIS)法分别优化了有机金属配合物8-羟基喹啉铍(BeQ2)及其3种衍生物分子的基态及最低激发单重态几何结构.系统分析了分子结构、前线分子轨道特征和能级分布规律以探索电子跃迁机理.应用含时密度泛函理论(TD-DFT)计算分子的电子光谱,揭示了BeQ2及其衍生物的发光源于配体中π→π*电子跃迁,指出通过配体修饰可以有效地影响配合物前线分子轨道分布,调整发光波段,并有效提高电荷转移量.  相似文献   

2.
BPh-2(mqp)的电子结构和光谱性质的含时密度泛函理论研究   总被引:2,自引:0,他引:2  
采用abinitioHF和DFTB3LYP方法,对配合物BPh2(mqp)基态结构进行优化,分析了前线分子轨道特征和能级分布.用abinitioCIS方法优化体系激发态结构.用含时密度泛函理论(TD-DFT)对BPh2(mqp)的电子光谱进行了研究.结果发现,该物质是配体发光配合物,其发光源于mqp配体内π*→π的电子跃迁.这表明在mqp配体上进行修饰,可有效地影响配合物前线分子轨道分布,达到调整发光波段的目的.  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.
采用密度泛函理论(DFT)方法研究了L-O2CCHCH3NH3(L-Alanine)修饰的手性多酸[SeMo6O21(L-alanine)3]2-, [SbMo6O21(L-alanine)3]3-及[BiMo6O21(L-alanine)3]3-的几何结构、电子结构以及紫外-可见(UV-Vis)谱和电子圆二色(ECD)谱.通过对电荷转移跃迁性质的分析, 探讨了多酸中杂原子对手性光学性质的影响.结果表明, 杂原子(Se, Sb, Bi)对多酸的几何结构影响较大, 且对该类体系的UV-Vis谱的吸收峰的强度和峰形都有显著的影响.其ECD谱的转动吸收方向和强度以及吸收峰位和峰形也因杂原子的不同而发生明显变化.低能区UV-Vis谱和ECD谱的产生主要源自多酸中氧原子的p轨道到Mo原子d轨道的电荷转移跃迁, 而对于高能区的UV-Vis谱和ECD谱的产生, 则主要为多酸中杂原子以及与杂原子直接相连的氧原子p轨道到Mo原子d轨道的电荷转移跃迁.  相似文献   

5.
采用DFT/TDDFT方法研究了二米基硼B(Mes)2基团修饰的一类Ir(ppy)2(acac)配合物1~3的光物理性质. 计算了电子结构,吸收和发射光谱以及自旋轨道耦合矩阵< T1α|HSOC|Sn >和辐射跃迁速率(kr),探讨了取代基位置不同对磷光辐射和非辐射跃迁性质的影响. 研究结果表明:向ppy配体的吡啶环引入B(Mes)2基团,能够加强金属铱(Ir)与配体乙酰丙酮(acac)的相互作用,减小单-三重态能级差ΔE(S1-T1),提高系间窜跃速率和磷光辐射跃迁速率. 向ppy配体的苯环引入B(Mes)2基团则增大了S0与T1的结构变形和自旋轨道耦合矩阵< S0|HSOC|T1 >,使非辐射跃迁速率增加. B(Mes)2基团位置异构,导致金属d轨道分裂方式不同,其在三个方向的自旋轨道耦合作用不同,辐射跃迁和非辐射跃迁都随之改变. 从理论上解释了通过对ppy配体的吡啶环修饰可获得高磷光量子产率的原因.  相似文献   

6.
采用从头算(ab initio)和密度泛函理论(DFT B3LYP)方法, 对配合物8-巯基喹啉锌Zn(tq)2及其5种衍生物基态结构进行优化, 用含时密度泛函理论(TD-DFT/B3LYP)及6-31+G(d)基组计算吸收光谱; 同时用ab initio HF 单激发组态相互作用(CIS)法在6-31G(d)基组上优化其最低激发单重态几何结构, 用含时密度泛函理论计算发射光谱. 结果表明, 电子在基态与激发态间的跃迁, 主要是在配体8-巯基喹啉(tq)环内的电荷转移, 电子从含S的苯硫酚环转移至含N的吡啶环上; 吸收光谱和发射光谱的计算值与实验值基本符合. 该类配合物都是优良的电子传输材料, 改变金属离子和取代基均可以调控发光材料的光谱波段.  相似文献   

7.
采用EHMO法计算了Cp2ZrX2(Cp:环戊二烯基;X:F,CI,I)的分子轨道能量组成并计算了这类络合物在可见-紫外光区的电子跃迁.为了检验我们的计算结果,测定了Cp2ZrCl2在可见-紫外光区的吸收光谱.计算结果如下:(1)三种络合物的能级图都非常相似,HOMO都是10b2,LUMO都是13α1.能级差按F,Cl,I的顺序减少,分别为1.51,1.47和1.37eV.(2)能量最低的一组空轨道主要是由Zr的d轨道组成,它们的能量都和Zr的d轨道能量接近.在填满轨道中,没有以Zr的d轨道为主体的分子轨道,这一点与通常认为这类络合物是d0体系的看法一致.卤素配位体的改变对能级高低和轨道组成有一定影响.(3)随卤素配位体的改变,Zr原子上的正电荷和卤素配位体上的负电荷,按F,Cl,I的顺序减少,而两个环戊二烯配位体上的负电荷则变化不大.(4)计算了这类络合物在可见-紫外光区的电子跃迁,发现在可见光区有一个吸收带,在紫外光区有三个吸收带.对产生这些谱带的跃迁性质进行了探讨.(5)实验测定了Cp2ZrCl2在四氢呋喃溶剂中的紫外吸收光谱,得到三个吸收带.计算结果与实验数据十分符合.  相似文献   

8.
在密度泛函B3LYP/LanL2DZ的水平上,对具有π-π弱相互作用调控的折叠型银配合物Ag2(MPTQ)22+进行计算研究。探讨该配合物的电子结构、成键特征、π-π弱相互作用机理、电荷布居及其相关性质。计算结果表明,Ag…Ag之间存在弱的直接相互作用,HOMO主要布居在配体中芳香环的σ-p轨道、S的σ-p轨道及与S相连的C12的S轨道上,LUMO主要布居在配体中芳香环的π*-p轨道上,基态电子光谱主要是配体中的n→π*跃迁产生的电荷转移光谱。论文还讨论了分子间π-π弱相互作用的本质及活性部位等。计算结果能较好地解释实验现象与规律。  相似文献   

9.
用密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)的B3LYP方法对以苯基吡唑ppz为主配体的4种Ir配合物Ir(ppz)3, Ir(ppz)2(acac), Ir(ppz)2(pic)和Ir(ppz)2(dbm)的电子结构和光谱性质进行了理论研究. 计算结果表明, 辅助配体的改变对Ir配合物的最高占据轨道(HOMO)的影响不大, 但会显著的降低分子最低空轨道(LUMO)的能级, 从而调节Ir配合物的HOMO和LUMO间的能隙. 4种配合物对应的发射跃迁分别为Ir(ppz)3:d(Ir)+π(ppz)→π*(ppz); Ir(ppz)2(pic):d(Ir)+(ppz)→π*(pic); Ir(ppz)2(acac), Ir(ppz)2(dbm):d(Ir)+π(acacdbm)→π*(acacdbm). 金属配合物的发光颜色可以通过选择合适的辅助配体调节.  相似文献   

10.
应用相对论密度泛函理论系统研究了水溶液中非水合化和水合化碳酸铀酰化合物Cn/m(其中n和m分别为结构中碳酸配体和水配体的个数)的结构.溶剂效应采用类导体屏蔽模型(COSMO),并采用零级规整近似(ZORA)方法考虑标量相对论效应和旋-轨耦合相对论效应.电子跃迁采用包含旋-轨耦合相对论效应的含时密度泛函理论并在相关交换势中采用轨道势能统计平均(SAOP)做近似计算.结果表明碳酸配体对配合物结构和电子跃迁有很大的影响.C3/0配合物的稳定性可归于5f轨道参与了高占据轨道的成键作用.增加碳酸盐配体导致最大波长的蓝移,并在近可见光区域出现高强度的吸收.  相似文献   

11.
Three new lanthanide complexes with dihalo-substituted 8-quinolinol: [Gd(BrQ)(3)(H(2)O)(2)]·1.33EtOH·0.33H(2)O (1), [Dy(ClQ)(3)(H(2)O)(2)]·1.33EtOH·0.33H(2)O (2), [Er(ClQ)(3)(H(2)O)(2)]·1.33EtOH·0.33H(2)O (3) (H-BrQ = 5,7-dibromo-8-quinolinol, H-ClQ = 5,7-dichloro-8-quinolinol) have been synthesized and characterized by elemental analysis, IR, ESI-MS, single-crystal X-ray diffraction and TGA. The single-crystal X-ray diffraction analyses reveal that complexes 1-3 are mononuclear and isostructural. Each metal centre is coordinated by three dihalo-substituted 8-quinolinol and two aqua ligands. The in vitro cytotoxicity of dihalo-substituted 8-quinolinol and complexes 1-3 against liver cancer BEL7404 was evaluated. The IC(50) values of 1-3 to BEL7404 were 47.2 ± 2.6, 18.3 ± 1.0 and 31.5 ± 1.2 nM, respectively. The lanthanide complexes 1-3 exhibited significantly enhanced cytotoxicity vs. free substituted 8-quinolinol. The binding properties of dihalo-substituted 8-quinolinol and complexes 1 and 2 to DNA were investigated by UV-vis, fluorescence, CD spectroscopy and viscosity measurements, as well as agarose gel electrophoresis experiments. Both complexes 1 and 2 interact more strongly with DNA than the free quinolinol ligand. Intercalation is the most probable binding mode for both the complexes and the quinolinol ligands.  相似文献   

12.
应用密度泛函PBE0方法优化5-[2'-氟-4'-溴-苯甲亚胺]-8-羟基喹啉铝(AlA3)及5-[2'-氟-4'-溴-苯甲亚胺]-8-羟基喹啉(HA)的几何构型, 用TDDFT法计算其电子光谱, 对电荷转移及金属原子与配体的结合能进行了讨论. 计算结果表明: (1) AlA3配合物较稳定, 但结合能略低于8-羟基喹啉铝(AlQ3). 与AlQ3相比, AlA3的轨道作用较强, 静电作用较弱, 两者之和相近, 但AlA3排斥能较大. (2) 计算AlA3的两个电子吸收峰与实验结果相符. AlA3中的电荷由羟基喹啉基团通过Al原子在不同配体间转移呈现出最大吸收峰, 属于AlQ3类衍生物的特征吸收峰. 因为体系的共轭程度增大使LUMO轨道能降低, 电子跃迁需要的能量减少, 故吸收峰比AlQ3红移; (3) 290 nm吸收峰是电荷由CN基团向羟基喹啉基团转移产生的. 在喹啉环接上5-[2'-氟-4'-溴-苯甲亚胺]基团可望制备出波长更长的发光材料, 且增加了一个较强的吸收峰.  相似文献   

13.
A new hexadentate, tripodal 8-hydroxyquinoline ligand (QH3) and its trivalent metal chelates (MQ, M=Al3+, Ga3+, In3+) with hemicage structures have been prepared and the electrochemical and photophysical properties systematically studied. The hemicage structure of the metal complexes was characterized by 1H NMR, indicating a pure facial geometry, in contrast to their uncaged cousins with 8-hydroxyquinoline (Mq3) and 3-methyl-8-hydroxyquinoline (M(3Meq)3), which all exist only as the meridional form in fluid solutions at room temperature. The photoluminescence quantum efficiency for the three hemicage complexes is 1.48, 1.79, and 1.26 times higher for AlQ, GaQ, and InQ, respectively, than their corresponding 3-methyl-8-hydroxyquinoline complexes, likely due to the rigidity of the ligand system, which can efficiently decrease the nonradiative decay of the excited states. The improved electrochemical stability of the hemicage complexes has been demonstrated by cyclic voltammetry, showing an increasingly reversible behavior from InQ to GaQ to AlQ (Ered=-2.15, -2.17, and -2.22 V vs Fc/Fc+ in DMSO). We infer that the degree of reversibility and redox potential result from the metal-ligand bond strength, which is largest in the case of aluminum.  相似文献   

14.
The first monomeric anhydrous scandium tris(8-quinolinolate) complex 1 with the 2-amino-8-quinolinolate ligands and the Sc(2)Q(6) dinuclear complex 2 with the unsubstituted 8-quinolinolate ligands have been synthesized and characterized by X-ray analysis and DFT calculations. The intramolecular hydrogen bonds appear to be responsible for the unique monomeric structure of complex 1. The DFT-based analysis of the electron density topology reveals the (3,-1) critical points corresponding to the O···H and N···H bonds. The two scandium atoms in compound 2 are inequivalent due to different ligand surroundings. They are coordinated by seven (5O, 2N) and eight (4O, 4N) ligand atoms. The increase in the coordination number is accompanied by a decrease in the positive charge of the metal atom as evidenced by the DFT calculations.  相似文献   

15.
Izquierdo A  Compaño R  Bars E 《Talanta》1986,33(5):463-466
The distribution equilibria of the zinc complex with 5,7-dichloro-2-methyl-8-hydroxyquinoline in the water-chloroform system have been studied at 25 degrees . The influence of pH, reagent and metal concentrations, and the presence of sodium perchlorate in the aqueous phase has been determined. From quantitative evaluation of the extraction equilibrium data, it has been deduced that the complex extracted is the simple 1:2 chelate, ZnR(2), although at ligand concentrations higher than 0.3M, the self-adduct complex seems to begin to form. The extraction constant of the ZnR(2) species, refined by means of the program Letagrop-Distribution, has the value log K(ex) = - 6.15 +/- 0.07.  相似文献   

16.
采用密度泛函理论, 在B3LYP/6-31G水平上对5,7′-(亚甲胺基)-二-羟基喹啉及其3种金属M(M=Zn, Mg, Be)有机配合物M(5,7′-Iminomethylq2)2的结构进行了全优化, 并用TDDFT方法计算了吸收光谱. 同时, 利用自然键轨道理论(NBO)和电子密度拓扑分析(AIM)方法对分子内氢键进行了分析. 结果表明, 光谱计算值与实验值基本符合, 该类化合物均具有较大的电子亲和能, 改变中心金属原子对配合物吸收光谱性质的影响不大. 和5,7′-Iminomethylq2相比, M(5,7′-Iminomethylq2)2的吸收光谱产生明显红移. 5,7′-Iminomethylq2及其M(5,7′-Iminomethylq2)2分子内存在较强的氢键, 可形成三元环, 五元环和六元环. 分子内氢键的存在使分子的稳定性增加.  相似文献   

17.
Bae C  Lee S  Choi SY  Kwag G 《Inorganic chemistry》2005,44(22):7911-7917
We report the synthesis and characterization of monomeric, oligomeric, and polymeric aluminum 8-hydroxyquinolines. The new structures of aluminum quinolate are contrived for expanding the application of AlQ(3) in the area of solution process by modifying AlQ(3) structure for improving solution processibility and crystallization resistance. Oligomeric aluminum 8-hydroxyquinoline (OALQ) was obtained using methylaluminoxane (MAO) and 8-hydroxyquinoline (8-HQ). Polymeric aluminum 8-hydroxyquinoline (PALQ) consists of 8-HQ and a polymeric Al-O backbone, simply prepared by stoichiometrically reacting 8-hydroxyquinoline, pentaerythritol propoxylate, and triethyl aluminum in the presence of chloroform. The absorption and emission spectra of OALQ and PALQ bear a clear resemblance to those of AlQ(3), and the molecular orbitals of OALQ and PALQ are virtually identical to those of AlQ(3). In the SEM images of AlQ(3) and OALQ, cylindrical rods of >100 microm in length and 5-10 microm in diameter for AlQ(3) and 20-100 microm in length and 1-5 microm in diameter for OALQ were observed, respectively. The size of the cylindrical rods of OALQ decreased compared with that of AlQ(3). As for the image of PALQ, an amorphous phase with bulge spots (ca. 5 microm) was observed. These microscope data correspond well to the X-ray powder pattern results. The chemical shifts (31.1, 57.0 ppm) and peak broadness of (27)Al NMR of AlQ(3) and its DFT calculation results present that mer- and fac-AlQ(3) appear in equilibrium through pentacoordinated intermediates. With the combination of DFT optimization and NMR calculation, models of OALQ and PALQ, hexa-, penta-, and tetracoordinated structures, were proposed, which exist in polymeric Al-O backbone and with inter- and intracoordination of Al-O bonds.  相似文献   

18.
The amination of 4,6-dichloro-5,7-dinitrobenzofuroxan and 4,6-dichloro-5,7-dinitrobenzofurazan with dibenzylamine followed the aromatic nucleophilic substitution pattern (SNAr) and gave products of replacement of both chlorine atoms in the six-membered ring with elimination of hydrogen chloride. Regardless of the reactant ratio, 4,6-dichloro-5,7-dinitrobenzofuroxan was converted into 4,6-bis(dibenzylamino)-5,7-dinitrobenzofuroxan, whereas 4,6-dichloro-5,7-dinitrobenzofurazan under analogous conditions gave rise to unusual bisammonium derivative which lost proton from the amino group on C4 and benzyl group from the amino group on C6; as a result, the corresponding diamine with secondary and tertiary nitrogen atoms was obtained. The structure of the isolated compounds was determined by IR and NMR spectroscopy, elemental analysis, and X-ray analysis; their thermal stability was studied by simultaneous thermogravimetry and differential scanning calorimetry.  相似文献   

19.
在K2CO3作为碱、乙腈作为溶剂的条件下,将2-氯甲基-4-苯基喹啉-3-羧酸乙酯(3)分别与5,7-二氯-8-羟基喹啉(4a)和5,7-二溴-8-羟基喹啉(4b)发生Williamson反应,以高收率得到结构新颖的二氯或二溴取代的双喹啉类目标化合物2-(5,7-二氯/二溴-8-喹啉氧甲基)-4-苯基喹啉-3-羧酸乙酯(2a,2b);其结构经波谱数据和元素分析证实.  相似文献   

20.
Tris(8-hydroxyquinoline)aluminum(III), AlQ3, is used in organic light-emitting diodes (OLEDs) as an electron-transport material and emitting layer. The reaction of AlQ3 with trace H2O has been implicated as a major failure pathway for AlQ3-based OLEDs. Hybrid density functional calculations have been carried out to characterize the hydrolysis of AlQ3. The thermochemical and atomistic details for this important reaction are reported for both the neutral and oxidized AlQ3/AlQ3+ systems. In support of experimental conclusions, the neutral hydrolysis reaction pathway is found to be a thermally activated process, having a classical barrier height of 24.2 kcal mol(-1). First-principles infrared and electronic absorption spectra are compared to further characterize AlQ3 and the hydrolysis pathway product, AlQ2OH. The activation energy for the cationic AlQ3 hydrolysis pathway is found to be 8.5 kcal mol(-1) lower than for the neutral reaction, which is significant since it suggests a role for charge imbalance in promoting chemical failure modes in OLED devices.  相似文献   

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