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1.
以1,4-二硝基苯甲酸(HL)和1,10-邻菲咯啉(phen)为配体,通过水热法与镧系金属盐合成了7个一维链状配位聚合物,其分子式为[Ce2L6(phen)2]n(1)和[LnL3phen]n(Ln=Sm,2;Eu,3;Gd,4;Tb,5;Dy,6;Er,7)。由X-射线单晶衍射测定了化合物晶体结构,通过磁性以及荧光测试表征了部分化合物的磁性和荧光性质。  相似文献   

2.
以2-甲基苯甲酸(2-MBA)为第一配体、1,10-邻菲罗啉(phen)为第二配体,制备了三元铽配合物Tb(2-MBA)3phen和二元铽配合物Tb(2-MBA)3·2H2O,并利用元素分析、红外光谱、紫外光谱、荧光光谱和荧光寿命对二者的结构与性能进行分析表征。研究结果表明:三元铽配合物Tb(2-MBA)3phen的荧光发射强度要强于二元铽配合物Tb(2-MBA)3·2H2O,而二者的荧光寿命恰好相反,三元铽配合物Tb(2-MBA)3phen的荧光寿命短于二元铽配合物Tb(2-MBA)3·2H2O。热重分析表明Tb(2-MBA)3·2H2O的热分解温度要远高于Tb(2-MBA)3phen。  相似文献   

3.
余玉叶 《化学研究》2006,17(1):16-19
合成了双水杨醛缩1,10-癸二胺Sch iff碱配体(C24H32N2O2,以L表示)与稀土Ln3+的15种新的固体配合物[LnL(NO3)3].nH2O(Ln=La,Ce,Pr,Nd,Sm,Eu,n=0;Ln=Gd,Tb,Dy,Ho,Er,Tm,Yb,Lu,Y,n=1).利用元素分析、摩尔电导、红外光谱、热分析等方法进行表征.中心金属离子Ln3+与Sch iff碱配体中的酚羟基氧以及硝酸根中的氧发生配位,配位数为8.  相似文献   

4.
合成了配体3,5-二苄氧基苯甲酰水杨醛腙(HL)及其与稀土硝酸盐的五种配合物. 通过元素分析、红外光谱、紫外光谱、摩尔电导等测试手段确定配合物组成为[Ln2(L)3(NO3)2](NO3) (Ln = Sm3+, Eu3+, Gd3+, Tb3+, Dy3+), 并对其进行了表征.  相似文献   

5.
本文在乙醇中合成了PMHFP及phen与希土离子的三元配合物Ln(PMHFP)_3·phen(Ln=La,Ce,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Ho,Er,Tm,Yb,Lu,Y).通过化学分析,元素分析及电导分析确定了配合物的组成;研究了配合物的紫外、红光光谱;借助于差热-热重分析仪研究了所有配合物的挥发性质,测定了它们各自的起始挥发温度,探讨了用于希土分析的可能性.  相似文献   

6.
本文在乙醇-水溶液中合成了H_2DBA及phen、[OH]~-与希土离子的混配配合物Ln(HDBA)_2(OH)(phen)·H_2O(Ln=La、Pr、Nd、Sm、Eu、Gd、Tb、Dy、Ho、Er、Tm、Yb、Y)十三个.通过化学分析,元素分析及电导分析确定了配合物的组成;研究了配合物的紫外、红外光谱及热行为,并对可能的配合物结构进行了推测.  相似文献   

7.
采用Claisen缩合反应合成了一种β-二酮1-(4-氨基苯)-3-苯基丙烷-1,3-二酮(L:C15H13NO2),以元素分析和1H NMR谱确定了其组成,核磁和红外分析结果表明L主要以烯醇式存在。以L为第一配体,分别以邻菲罗啉(phen),2,2’-联吡啶(bipy)为第二配体,合成了新的稀土Eu,Tb(Ⅲ)三元配合物。通过元素分析、红外光谱、紫外光谱、磷光光谱和荧光光谱对合成的配合物进行了表征。荧光光谱表明:稀土铽配合物的发光性能优于稀土铕配合物,进一步研究表明配体L与Tb3+间能级差较匹配,分子内传能效率高;phen对配合物的荧光敏化效果优于bipy,表明第二配体的刚性和共轭性越大,配合物的发光性能越好。  相似文献   

8.
在甲醇体系中,用常规溶液法由自行设计合成的配体2-[2-(4-苯甲酸甲酯)乙烯基]-8-羟基喹啉(C_(19)H_(15)NO_3, HL)和稀土硝酸盐(Ln(NO_3)_3·nH_2O)反应合成了6个相应的配合物[Ln(NO_3)(L)_2](Ln=Nd,1; Sm,2; Eu,3; Gd,4; Tb,5; Dy,6);配体用红外光谱、核磁共振、单晶X射线衍射进行表征和结构测定;配合物用元素分析、红外光谱、摩尔电导、热重分析进行表征。室温下,测定了配体和配合物的荧光光谱及配合物的荧光寿命,结果表明:配体本身在575 nm处有较强的荧光发射,当形成配合物后,仍然表现为配体的发光而没有出现稀土中心离子的特征发光;与此同时,依中心离子的不同出现了不同程度的荧光增强或减弱现象,并伴随一定程度的红移或蓝移现象。  相似文献   

9.
以2,4-二氯苯氧乙酸为第一配体、1,10-菲罗啉为第二配体,合成了钐、铕的二元、三元配合物。通过元素分析、EDTA络合滴定及热重分析,确定了配合物的通式为RE(DCP)3.H2O,RE(DCP)3phen(RE=Sm,Eu;DCP=2,4-二氯苯氧乙酸根;phen=邻菲罗啉);测定了配合物红外光谱、紫外光谱、荧光光谱;研究了配合物的热稳定性。结果表明,三元配合物较二元配合物稳定;Eu(DCP)3.H2O和Eu(DCP)3phen具有荧光性能。  相似文献   

10.
首次利用2-氟异烟酸为配体合成并表征了6例一维螺旋链稀土离子配位聚合物,分别为:{[Ln(FINA)3(H2O)2]·H2O}n(Ln=Pr(1),Nd(2),Eu(3),Gd(4)),{[Dy(FINA)3(H2O)2]}n(5)和{[Gd(FINA)2(phen)(OH)]}n(6)(HFINA=2-氟异烟酸,phen=1,10-邻菲罗啉),其中1~4为相同构型。由于镧系收缩效应的影响,配体在1~5中表现出不同的配位模式而稀土离子也呈现不同的配位构型。这些一维链通过分子间强的O-H…O/N氢键和芳环间的π…π作用以及C-H…F氢键等丰富的分子间力连接成三维超分子结构。有趣的是在化合物1~4中存在可以容纳一个水分子的一维溶剂分子孔道。荧光测试表明:配合物3表现出铕离子的特征红色荧光,荧光寿命为333.81μs;而4则表现出配体特征的荧光。变温磁化率测试表明在2~6中稀土离子间表现为弱的反铁磁相互作用。热重分析表明所合成的配合物均有较好的热稳定性。  相似文献   

11.
To tune the lanthanide luminescence in related molecular structures, we synthesized and characterized a series of lanthanide complexes with imidazole-based ligands: two tripodal ligands, tris{[2-{(1-methylimidazol-2-yl)methylidene}amino]ethyl}amine (Me(3)L), and tris{[2-{(imidazol-4-yl)methylidene}amino]ethyl}amine (H(3)L), and the dipodal ligand bis{[2-{(imidazol-4-yl)methylidene}amino]ethyl}amine (H(2)L). The general formulas are [Ln(Me(3)L)(H(2)O)(2)](NO(3))(3)·3H(2)O (Ln = 3+ lanthanide ion: Sm (1), Eu (2), Gd (3), Tb (4), and Dy (5)), [Ln(H(3)L)(NO(3))](NO(3))(2)·MeOH (Ln(3+) = Sm (6), Eu (7), Gd (8), Tb (9), and Dy (10)), and [Ln(H(2)L)(NO(3))(2)(MeOH)](NO(3))·MeOH (Ln(3+) = Sm (11), Eu (12), Gd (13), Tb (14), and Dy (15)). Each lanthanide ion is 9-coordinate in the complexes with the Me(3)L and H(3)L ligands and 10-coordinate in the complexes with the H(2)L ligand, in which counter anion and solvent molecules are also coordinated. The complexes show a screw arrangement of ligands around the lanthanide ions, and their enantiomorphs form racemate crystals. Luminescence studies have been carried out on the solid and solution-state samples. The triplet energy levels of Me(3)L, H(3)L, and H(2)L are 21?000, 22?700, and 23?000 cm(-1), respectively, which were determined from the phosphorescence spectra of their Gd(3+) complexes. The Me(3)L ligand is an effective sensitizer for Sm(3+) and Eu(3+) ions. Efficient luminescence of Sm(3+), Eu(3+), Tb(3+), and Dy(3+) ions was observed in complexes with the H(3)L and H(2)L ligands. Ligand modification by changing imidazole groups alters their triplet energy, and results in different sensitizing ability towards lanthanide ions.  相似文献   

12.
The new solid complexes [LnL2(NO3)2]NO3 (L=C18H23NO2, N-2-hydroxy-3-methoxy-benzaldehyde-1-aminoadamanantane, Ln=La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb, Lu, Y) of rare earth nitrates with Schiff base derived from o-vanillin and adamantaneamine have been synthesized in non-aqueous system and characterized by elemental analysis, molar conductance, infrared spectra, 1H NMR spectra, thermal analysis. The coordination modes of the bonding in these complexes were discussed and the possible structure were proposed. Every central Ln(Ⅲ) ion in the complexes coordinates with both two Schiff base ligands via four oxygen atoms of the phenol hydroxy groups and methoxy groups and two nitrates via their four oxygen atoms. Their coordination numbers are eight. In addition, the antibacterial activity of the Schiff base ligand and the complexes were studied.  相似文献   

13.
稀土组氨酸配合物的合成和性质研究   总被引:1,自引:0,他引:1  
本文合成了十二个稀土与L-组氨酸(L-His)的固体配合物,元素分析结果表明配合物的组成为Ln(His)3(NO3)32H2O(Ln=Y,La,Ce,Pr,Nd,Sm,Eu,Gd,Tb,Dy,Er,Tm)。并通过配合物的IR、UV、H-NMR、TG-DTA、磁化率及在水中的摩尔电导等的研究,表征了这些配合物的物理化学性质,结果表明稀土组氨配合物中配体通过羟基氧原子与镧系离子配位。  相似文献   

14.
合成了双亲性的铕、铽-邻苯二甲酸正十四醇单酯-邻菲咯啉三元混配配合物,用红外光谱及差热-热重谱进行了表征。考察了发光性能。研究了它们在空气-水界面上的单分子膜行为,结果表明均具有良好的成膜行为。  相似文献   

15.
采用水热法合成了5个稀土配合物[Sm2(bdbc)2(phen)4](1)和[Ln(bdbc)(phen)(H2O)][Ln=Eu(2), Gd(3), Tb(4), Dy(5), bdbc=(2-羧基苯氧基)苯-1,2-二羧酸根, phen=1,10-邻菲啰啉]. 配合物1是双核分子, 通过氢键和C—H…π作用进一步构筑成一维超分子结构; 配合物2~5是同构的一维双螺旋结构, 通过氢键和C—H…π作用进一步构筑成三维超分子结构. 配合物1, 2, 4和5呈现了Sm3+, Eu3+, Tb3+和Dy3+离子的特征发射, 分别对应于Sm3+离子的4G5/26HJ/2(J=5, 7, 9)、 Eu3+离子的5D07FJ(J=1—4)、 Tb3+离子的5D47FJ(J=6, 5, 4, 3)和Dy3+离子的4F5/26HJ/2(J=15, 13)跃迁. 对配合物4的荧光性质进行了表征, 结果表明, 配合物4可用作荧光探针以检测阳离子和苯甲醛.  相似文献   

16.
We have discovered room temperature photoluminescence in Sm3+ and Pr3+ dithiocarbamate complexes. Surprisingly, these complexes exhibit more intense emission than those of the Eu3+, Tb3+, and Dy3+ analogues. The electronic absorption, excitation, and emission spectra are reported for the complexes [Ln(S2CNR2)3L] and NH2Et2[Ln(S2CNEt2)4], where Ln = Sm, Pr; R = ethyl, ibutyl, benzyl; and L = 1,10-phenanthroline, 2,2'-bipyridine, and 5-chloro-1,10-phenanthroline. The lowest ligand-localized triplet energy level (T1) of the complexes are determined from the phosphorescence spectra of analogous La3+ and Gd3+ chelates. The luminescence decay curves were measured to determine the excited-state lifetimes for the Pr3+ and Sm3+ complexes. X-ray crystal structures of Sm(S2CNiBu2)3phen, Pr(S2CNEt2)3phen, and Pr(S2CNiBu2)3phen are also reported.  相似文献   

17.
Song X  Zhou X  Liu W  Dou W  Ma J  Tang X  Zheng J 《Inorganic chemistry》2008,47(24):11501-11513
To explore the relationships between the structures of ligands and their complexes, we have synthesized and characterized a series of lanthanide complexes with two structurally related ligands, 1,1,1,1-tetrakis{[(2'-(2-benzylaminoformyl))phenoxyl]methyl}methane (L(I)) and 1,1,1,1-tetrakis{[(2'-(2-picolyaminoformyl))phenoxyl]methyl}methane (L(II)). A series of zero- to three-dimensional lanthanide coordination complexes have been obtained by changing the substituents on the Pentaerythritol. Our results revealed that, complexes of the L(I) ligand, {Ln(4)L(I)(3)(NO(3))(12).nC(4)H(10)O}(infinity) (Ln = Nd, Eu, Tb, Er, n = 3 or 6)] show the binodal 3,4-connected three-dimensional interpenetration coordination polymers with topology of a (8(3))(4)(8(6))(3) notation. Compared to L(I), complexes of L(II) present a cage-like homodinuclear [Ln(2)L(II)(2)(NO(3))(6).2H(2)O].nH(2)O (Ln = Nd, Tb, Dy, n = 0 or 1) or a helical one-dimensional coordination {[ErL(II)(NO(3))(3).H(2)O].H(2)O}(infinity) polymer. The luminescence properties of the resulting complexes formed with ions used in fluoroimmunoassays (Ln = Eu, Tb) are also studied in detail. It is noteworthy that subtle variation of the terminal group from benzene to pyridine not only sensibly affects the overall molecular structures but also the luminescence properties as well.  相似文献   

18.
Li J  Li H  Yan P  Chen P  Hou G  Li G 《Inorganic chemistry》2012,51(9):5050-5057
A new β-diketone, 2-(2,2,2-trifluoroethyl)-1-indone (TFI), which contains a trifluorinated alkyl group and a rigid indone group, has been designed and employed for the synthesis of two series of new TFI lanthanide complexes with a general formula [Ln(TFI)(3)L] [Ln = Eu, L = (H(2)O)(2) (1), bpy (2), and phen (3); Ln = Sm, L = (H(2)O)(2) (4), bpy (5), and phen (6); bpy = 2,2'-bipyridine, phen = 1,10-phenanthroline]. X-ray crystallographic analysis reveals that complexes 1-6 are mononuclear, with the central Ln(3+) ion eight-coordinated by six oxygen atoms furnished by three TFI ligands and two O/N atoms from ancillary ligand(s). The room-temperature photoluminescence (PL) spectra of complexes 1-6 show strong characteristic emissions of the corresponding Eu(3+) and Sm(3+) ions, and the substitution of the solvent molecules by bidentate nitrogen ligands essentially enhances the luminescence quantum yields and lifetimes of the complexes.  相似文献   

19.
Two new flexible exo-bidentate ligands were designed and synthesized, incorporating different backbone chain lengths bearing two salicylamide arms, namely 2,2'-(2,2'-oxybis(ethane-2,1-diyl)bis(oxy))bis(N-benzylbenzamide) (L(I)) and 2,2'-(2,2'-(ethane-1,2-diylbis(oxy))bis(ethane-2,1-diyl))bis(oxy)bis(N-benzylbenzamide) (L(II)). These two structurally related ligands are used as building blocks for constructing diverse lanthanide polymers with luminescent properties. Among two series of lanthanide nitrate complexes which have been characterized by elemental analysis, TGA analysis, X-ray powder diffraction, and IR spectroscopy, ten new coordination polymers have been determined using X-ray diffraction analysis. All the coordination polymers exhibit the same metal-to-ligand molar ratio of 2?:?3. L(I), as a bridging ligand, reacts with lanthanide nitrates forming two different types of 2D coordination complexes: herringbone framework {[Ln(2)(NO(3))(6)(L(I))(3)·mC(4)H(8)O(2)](∞) (Ln = La (1), and Pr (2), m = 1, 2)} as type I,; and honeycomb framework {[Ln(2)(NO(3))(6)(L(I))(3)·nCH(3)OH](∞) (Ln = Nd (3), Eu (4), Tb (5), and Er (6), n = 0 or 3)} as type II, which change according to the decrease in radius of the lanthanide. For L(II), two distinct structure types of 1D ladder-like coordination complexes were formed with decreasing lanthanide radii: [Ln(2)(NO(3))(6)(L(II))(3)·2C(4)H(8)O(2)](∞) (Ln = La (7), Pr (8), Nd (9)) as type III, [Ln(2)(NO(3))(6)(L(I))(3)·mC(4)H(8)O(2)·nCH(3)OH](∞) (Ln = Eu (10), Tb (11), and Er (12), m, n = 2 or 0) as type IV. The progressive structural variation from the 2D supramolecular framework to 1D ladder-like frameworks is attributed to the varying chain length of the backbone group in the flexible ligands. The photophysical properties of trivalent Sm, Eu, Tb, and Dy complexes at room temperature were also investigated in detail.  相似文献   

20.
Li Y  Zheng FK  Liu X  Zou WQ  Guo GC  Lu CZ  Huang JS 《Inorganic chemistry》2006,45(16):6308-6316
A series of homodinuclear lanthanide(III) complexes with the 4-cba ligand, [La2(4-cba)6(phen)2(H2O)6] (1) and [Ln2(4-cba)6(phen)2(H2O)2] (Ln = Pr (2), Nd (3), Sm (4), Eu (5), Gd (6), and Dy (7); 4-Hcba = 4-cyanobenzoic acid; phen = 1,10-phenanthroline), have been synthesized and structurally characterized by single-crystal X-ray diffraction. In 1, two water molecules bridge two nine-coordinated La ions, and six 4-cba ligands coordinate to the two La ions in terminal mode. In the isostructural complexes 2-7, two eight-coordinated Ln ions are connected by four bidentate 4-cba ligands, and another two 4-cba ligands terminate the two Ln ions. The variable-temperature magnetic properties of 2-7 have been investigated. Complex 7 shows a significant ferromagnetic interaction between Dy(III), while no magnetic interaction exists between Gd(III) ions in 6. In 2-5, the value of chi(M)T decreases with decreasing temperature, but the magnetic interactions between the Ln(III) ions cannot definitely be concluded. Notably, the spin-orbit coupling parameters, lambda, for Sm(III) (216(2) cm(-1)) and Eu(III) (404(2) cm(-1)) have been obtained in 4 and 5, respectively. The strong fluorescent emissions of 4, 5, and 7 demonstrate that ligand-to-Ln(III) energy transfer is efficient and that the coordinated water molecules do not quench their luminescence by the nonradiative dissipation of energy.  相似文献   

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