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1.
林美娟  胡珍 《应用化学》2009,26(6):646-650
以一定比例正辛酸和月桂酸为第一配体,通过皂化法合成了脂肪酸铕配合物,并溶于甲基丙烯酸甲酯(MMA)单体通过本体聚合得到了含脂肪酸铕的PMMA光致发光聚合物材料AxByEu/PMMA(其中A=正辛酸根,B=月桂酸根,x、y分别表示正辛酸和月桂酸的比例)。考察了不同的第二配体(咔唑、二甲基-联吡啶、邻菲罗啉、噻吩甲酰三氟丙酮HTTA)对脂肪酸铕聚合物发光性能的影响,选择出合适的第二配体HTTA,进而合成了A3Eu/HTTA/PMMA聚合物。通过红外光谱、紫外光谱及荧光光谱对脂肪酸铕配合物及聚合物的结构和荧光性能进行表征。结果表明:合成的脂肪酸铕配合物及其聚合物均具有很好的光致发光性能,紫外激发能发射Eu3+离子的特征红光。当HTTA的质量分数减小至0.02%时,仍能很好地促进体系的发光,且不影响聚合物本身的透明性。  相似文献   

2.
林美娟  安琪  胡珍  曾惠卷  凌启淡 《应用化学》2014,31(10):1164-1170
合成了正己酸铕、正辛酸铕、月桂酸铕和硬脂酸铕4种不同碳链链长的脂肪酸铕配合物,通过哈克转矩流变仪将铕配合物(质量分数1%)机械掺杂于3种不同透明度的聚乙烯(PE)、聚丙烯(PP)和聚苯乙烯(PS)通用树脂中,制备了系列铕配合物掺杂聚合物光致发光复合材料,考察了配体、配合物、聚合物基体对复合材料的外观、透明性及其荧光性能的影响。 结果表明,4种脂肪酸铕配合物及其掺杂的复合材料在紫外光的激发下均在593、617 nm处发射强的Eu3+离子5D0→7F1、5D0→7F2跃迁的特征荧光;脂肪酸配体的碳链长短对铕配合物及复合材料的发光影响较小;PE、PP复合材料发光颜色与红光铕配合物相同,PS复合材料因基体PS和Eu3+离子的发光共同作用而呈现了玫瑰红的荧光发射。  相似文献   

3.
合成了含β二酮(HTTA或HDBM)的稀土铕配合物Eu(OC3H7)xβy,并与MMA单体通过本体聚合获得PMMA/Eu(OC3H7)xβy聚合物,研究稀土配合物中x与y的大小对聚合物性能的影响.结果表明:PMMA/Eu(OC3H7)xβy聚合物能发射很强的Eu3 离子的特征荧光,其中当x=3(y=0)时,荧光强度最小,当y=2(x=1)时,荧光强度强且与y=3(x=0)时相当;x与y的大小对聚合物的溶解性及微观形貌都有一定的影响.  相似文献   

4.
以氧化铕(Eu_2O_3)、对氯苯甲酸(PCBA)、对溴苯甲酸(PBrBA)和菲咯啉(phen)为原料制备了菲咯啉对氯苯甲酸铕[Eu(PCBA)_3phen]、菲咯啉对溴苯甲酸铕[Eu(PBrBA)_3phen]两种探针分子,并将这2种探针分子掺杂在甲基丙烯酸甲酯(MMA)中,以过氧化苯甲酰(BPO)为引发剂,制得Eu(PCBA)_3phen/PMMA和Eu(PBrBA)_3phen/PMMA温敏漆样品。利用红外光谱仪、扫描电子显微镜、紫外-可见分度光度计和荧光光谱仪对探针分子的组成结构、发光性能、形貌和温敏漆的温度敏感性进行了测试分析,研究了不同配体对探针分子发光性能和温敏漆性能的影响。结果表明,Eu~(3+)分别与对氯苯甲酸(PCBA)和对溴苯甲酸(PBrBA) 2种主配体配位,并且第二配体菲咯啉(phen)均参与了配位,成功合成了2种配合物。2种配合物均发出Eu~(3+)的特征荧光,其中以PBrBA为主配体的菲咯啉铕三元配合物具有更好的发光性能。此外,基于这2种探针分子制备的温敏漆在50~90℃范围内均具有温度猝灭性能,以Eu(PCBA)_3phen为探针制成的温敏漆温度敏感性更强。  相似文献   

5.
三种新的铕(Ⅲ)三元配合物的合成及发光性质研究   总被引:4,自引:0,他引:4  
合成了吡嗪[2,3-f] 并邻菲罗啉及其一系列衍生物,作为第二配体,并以二苯甲酰甲烷为第一配体,合成了3种新的铕(Ⅲ)三元配合物.通过元素分析、红外光谱、核磁共振光谱确定了它们的组成,研究了三种配合物的热稳定性、成膜性能和光致发光性能(发光强度、荧光量子效率和寿命),并初步从理论上探讨含有不同基团的第二配体的结构对铕(Ⅲ)配合物发光的影响,结果表明:这三种铕(Ⅲ)三元配合物均为优良的红色发光材料,而且在真空条件下均形成均衡的薄膜,这为以这三种铕(Ⅲ)配合物作为发光层材料制作有机电致发光器件提供了认识基础.  相似文献   

6.
三种新的铕(III)三元配合物的合成及发光性质研究   总被引:1,自引:0,他引:1  
合成了吡嗪 [2 ,3 f]并邻菲罗啉及其一系列衍生物 ,作为第二配体 ,并以二苯甲酰甲烷为第一配体 ,合成了 3种新的铕 (III)三元配合物 .通过元素分析、红外光谱、核磁共振光谱确定了它们的组成 ,研究了三种配合物的热稳定性、成膜性能和光致发光性能 (发光强度、荧光量子效率和寿命 ) ,并初步从理论上探讨含有不同基团的第二配体的结构对铕 (III)配合物发光的影响 ,结果表明 :这三种铕 (III)三元配合物均为优良的红色发光材料 ,而且在真空条件下均形成均衡的薄膜 ,这为以这三种铕 (III)配合物作为发光层材料制作有机电致发光器件提供了认识基础  相似文献   

7.
林美娟  王文  章文贡 《应用化学》2011,28(8):879-886
合成了3,5-二硝基水杨酸铕配合物(EuDNS)及其聚合物材料,通过元素分析和红外光谱等测试技术推测了配合物的结构,考察了配合物的用量和聚合物基质对聚合物材料荧光性能的影响。 结果表明,配合物EuDNS可能存在的螯合杂环结构使其有较宽的紫外吸收,且与其荧光激发波长能较好的吻合,能发射很强的稀土Eu3+离子特征红光;当EuDNS质量分数为0.25%时,EuDNS/PMMA(甲基丙烯酸甲酯)聚合物材料仍有很强的荧光强度;3种不同聚合物基质中,最强发射峰强度顺序为:P(MMA-co-St)>PMMA>P(MMA-co-AA),丙烯酸(AA)共聚单体会强烈猝灭材料发光;EuDNS对MMA/St自由基共聚有阻聚和缓聚作用,随苯乙烯(St)的比例提高,阻聚作用增大,且材料透明性降低;与EuDNS配合物相比,EuDNS/PMMA聚合物材料形成后表观荧光寿命延长了467.5 μs。  相似文献   

8.
在乙腈介质中, 除水剂原甲酸三乙酯存在下, 合成了以Eu(Ⅲ), Eu(Ⅲ)-La(Ⅲ), Eu(Ⅲ)-Gd(Ⅲ)为中心, 以冠醚(18-C-6)及对苯二甲酸为配体的同核铕及其铕-镧、铕-钆异核稀土配合物,并对其进行了元素分析、红外光谱分析及荧光性能的测定和研究.发现空腔较大的18-C-6不仅可以与半径大的La3 离子配位, 还可以与半径小的Eu3 和Gd3 离子配位. 非荧光的La(Ⅲ), Gd(Ⅲ)对Eu(Ⅲ)的发光有较强的敏化作用,桥联配体对苯二甲酸根可有效地传送能量. 与大多数铕配合物不同, 所研究的配合物的5D0→7F0跃迁强度非常高.  相似文献   

9.
含稀土铕配合物三维有序大孔材料的制备及其荧光性能   总被引:2,自引:0,他引:2  
采用物理吸附的方法将稀土配合物嵌入三维有序大孔聚合物材料的孔内,组装了发光性能良好的含邻菲罗林-铕配合物的三维有序大孔聚合物材料(3DOM/Eu(Phen)2).并通过扫描电镜、红外光谱和荧光光谱对3DOM/Eu(Phen)2组装体进行了表征.结果表明:组装体的结构保持了三维有序大孔材料的结构特征,在紫外灯的照射下,发出稀土离子的特征谱线,与纯配合物相比,其激发光谱发生蓝移,荧光寿命延长.  相似文献   

10.
聚合物对Eu(TTA)3·2NMP发光性能的影响   总被引:1,自引:0,他引:1  
研究了聚乙烯吡咯烷酮(PVP)、聚乙烯醇(PVA)、聚甲基丙烯酸甲酯(PMMA)三种共混膜材料之间对铕/α-噻吩甲酰三氟丙酮/N-甲基吡咯烷酮[Eu(TTA)3*2NMP]三元配合物发光性能的差异. 实验发现, 无论是溶液状态, 还是共混膜材料, 三元配合物/聚合物的荧光强度均大于三元配合物的荧光强度, 为稀土荧光物质的成膜与加工提供了重要的实验依据.  相似文献   

11.
The single crystals of (C2H7N4O)2[UO2(C2O4)2(H2O)] were studied by X-ray diffraction. The crystals are monoclinic, space group Pn, Z = 2, unit cell parameters: a = 9.4123(2) Å, b = 8.4591(2) Å, c = 11.8740(3) Å, β = 105.500(10)°, V = 911.02(4) Å3. The main structural units of the crystals of I are islet complex groups [UO2(C2O4)2(H2O)]2? corresponding to the crystal chemical group AB 2 01 M1 (A = UO UO 2 2+ , B01 = C2O 4 2? , M = H2O) of uranyl complexes. Uranium-containing mononuclear complexes are connected into a three-dimensional framework through the electrostatic interactions and hydrogen bonding system involving carbamyolguanidinium ions.  相似文献   

12.
[Cd(H2O)3(C5H6O4)]·2H2O ( 1 ) and Cd(H2O)2(C6H8O4) ( 2 ) were prepared from reactions of fresh CdCO3 precipitate with aqueous solutions of glutaric acid and adipic acid, respectively, while Cd(H2O)2(C8H12O4) ( 3 ) crystallized in a filtrate obtained from the hydrothermal reaction of CdCl2·2.5H2O, suberic acid and H2O. Compound 1 consists of hydrogen bonded water molecules and linear {[Cd(H2O)3](C5H6O4)2/2} chains, which result from the pentagonal bipyramidally coordinated Cd atoms bridged by bis‐chelating glutarato ligands. In 2 and 3 , the six‐coordinate Cd atoms are bridged by bis‐chelating adipato and suberato ligands into zigzag chains according to {[Cd(H2O)3](C5H6O4)2/2} and {[Cd(H2O)2](C8H12O4)2/2}, respectively. The hydrogen bonds between water and the carboxylate oxygen atoms are responsible for the supramolecular assemblies of the zigzag chains into 3D networks. Crystallographic data: ( 1 ) P1¯ (no. 2), a = 8.012(1), b = 8.160(1), c = 8.939(1) Å, α = 82.29(1)°, β = 76.69(1)°, γ = 81.68(1)°, U = 559.6(1) Å3, Z = 2; ( 2 ) C2/c (no. 15), a = 16.495(1), b = 5.578(1), c = 11.073(1) Å, β = 95.48(1)°, U = 1014.2(1) Å3, Z = 4; ( 3 ) P2/c (no. 13), a = 9.407(2), b = 5.491(1), c = 11.317(2) Å, β = 95.93(3)°, U = 581.4(2) Å3, Z = 2.  相似文献   

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16.
The crystal and molecular structure of dipotassium di‐μ‐oxo‐bis[aqua(oxalato‐O1,O2)oxomolybdenum(III)] trihydrate, K2­[Mo2O4(C2O4)2(H2O)2]·3H2O, has been determined from X‐ray diffraction data. In the dimeric anion, which has approximate twofold symmetry, each Mo atom is in a distorted octahedral coordination, being bonded to one terminal oxo‐O atom, two bridging O atoms, two O atoms from the oxalato ligand and one from the water mol­ecule. Bond lengths trans to the multiple‐bonded terminal oxo ligand are larger than those in the cis position, confirming the trans influence as a generally valid rule.  相似文献   

17.
Synthetic methods for several novel phosphoramidate compounds containing the P(O)NHC(O) bifunctional group were developed. These compounds with the general formula R1C(O)NHP(O)(N(R2)(CH2C6H5))2, where R1 = CCl2H, p-ClC6H4, p-BrC6H4, o-FC6H4 and R2 = hydrogen, methyl, benzyl, were characterized by several spectroscopic methods and analytical techniques. The effects of phosphorus substituents on the rotation rate around the P–Namine bond were also investigated. 1H NMR study of the synthesized compounds demonstrated that the presence of bulky groups attached to the phosphorus center and electron withdrawing groups in the amide moiety lead to large chemical-shift non-equivalence (ΔδH) of diastereotopic methylene protons. The crystal structures of CCl2HC(O)NHP(O)(NCH3(CH2C6H5))2, p-ClC6H4C(O)NHP(O)(NCH3(CH2C6H5))2, CCl2HC(O)NHP(O)(N(CH2C6H5)2)2 and p-BrC6H4C(O)NHP(O)(N(CH2C6H5)2)2 were determined by X-ray crystallography using single crystals. The coordination around the phosphorus center in these compounds is best described as distorted tetrahedral and the P(O) and C(O) groups are anti with respect to each other. In the compound Br-C6H4C(O)NHP(O)(N(CH2C6H5)2)2 (with two independent molecules in the unit cell), two conformers are connected to each other via two different N–H?O hydrogen bonds forming a non-centrosymmetric dimer. In the crystalline lattice of other compounds, the molecules form centrosymmetric dimers via pairs of same N–H?O hydrogen bonds. The structure of CCl2HC(O)NHP(O)(N(CH2C6H5)2)2 reveals an unusual intramolecular interaction between the oxygen of CO group and amine nitrogen.  相似文献   

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19.
Reactions of a freshly prepared Zn(OH)2‐2x(CO3)x · yH2O precipitate, phenanthroline with azelaic and sebacic acid in CH3OH/H2O afforded [Zn(phen)(C9H15O4)2] ( 1 ) and [Zn2(phen)2(H2O)2(C10H16O4)2] · 3H2O ( 2 ), respectively. They were structurally characterized by X‐ray diffraction methods. Compound 1 consists of complex molecules [Zn(phen)(C9H15O4)2] in which the Zn atoms are tetrahedrally coordinated by two N atoms of one phen ligand and two O atoms of different monodentate hydrogen azelaato groups. Intermolecular C(alkyl)‐H···π interactions and the intermolecular C(aryl)‐H···O and O‐H···O hydrogen bonds are responsible for the supramolecular assembly of the [Zn(phen)(C9H15O4)2] complexes. Compound 2 is built up from crystal H2O molecules and the centrosymmetric binuclear [Zn2(phen)2(H2O)2(C10H16O4)2] complex, in which two [Zn(phen)(H2O)]2+ moieties are bridged by two sebacato ligands. Through the intermolecular C(alkyl)‐H···O hydrogen bonds and π‐π stacking interactions, the binuclear complex molecules are assembled into layers, between which the lattice H2O molecules are sandwiched. Crystal data: ( 1 ) C2/c (no. 15), a = 13.887(2), b = 9.790(2), c = 22.887(3)Å, β = 107.05(1)°, U = 2974.8(8)Å3, Z = 4; ( 2 ) P1¯ (no. 2), a = 8.414(1), b = 10.679(1), c = 14.076(2)Å, α = 106.52(1)°, β = 91.56(1)°, γ = 99.09(1)°, U = 1193.9(2)Å3, Z = 1.  相似文献   

20.
The Raman and infrared spectra of solid K2(12)C2O4 x H2O are reported together with, for the first time, the corresponding Raman and infrared spectra of solid K2(13)C2O4 x H2O. Raman spectra of aqueous solutions of both isotopomers are also reported. In the solid state the oxalate anion is planar with D2h symmetry in this salt, whereas in aqueous solution the Raman spectra of the anion are best interpreted on the basis of D2d symmetry. The Raman spectra of solid (NH4)2(12)C2O4 x H2O and (NH4)2(13)C2O4 x H2O, in which the oxalate anion is twisted from planarity by 28 degrees about the CC bond, have also been recorded. Several reassignments have been made. The harmonic force field for the oxalate anion in the D2h, D2 and D2d geometries has been determined in part, and approximate values of key valence force constants determined. All the observed band wavenumbers and 12C/13C isotopic shifts are well reproduced by the force fields. The potential energy distribution of the totally symmetric normal modes of planar oxalate indicates that each mode consists of extensively mixed symmetry corrdinates and that the labels previously used for the bands seen here at 475 and 879 cm(-1) would better be described as v(CC) and deltaS(CO2), respectively, putting them in the same wavenumber order as v(NN) and deltaS(NO2) for the isoelectronic and isostructural molecule N2O4. The stretching force constants of N2O4 and planar C2O4(2-) are established to be in the order f(NN) < f(CC) and f(NO) > f(CO), consistent with the known relative bond lengths.  相似文献   

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