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1.
By using 1-phenyl-3-methyl-4-isobutyryl-5-pyrazolone (pmip) as the ancillary ligand, the cyclometalated complex: bis-(2-phenylpyridine)-(pmip)-iridium [(ppy)2Ir(pmip)] was synthesized. Its crystal structure, absorption and emission were compared with those of its analogue, the frequently used electrophosphorescent material (ppy)2Ir(dbm) [bis-(2-phenylpyridine)-(dibenzoylmethane) iridium]. For (ppy)2Ir(pmip) in dichloromethane, the emission is highly structured and the intensity is 5 times higher than that of (ppy)2Ir(dbm). It is a result of the higher triplet energy level of pmip relative to that of dbm. In solid state, green emission of (ppy)2Ir(pmip) peaked at 550 nm was observed with a quantum efficiency 0.31% in contrast to the emission at 626 nm with a quantum efficiency of 0.76% for (ppy)2Ir(dbm). The bathochromical shift and higher efficiency in crystallized (ppy)2Ir(dbm) was explained by the stronger π-π intermolecular interactions which is unique to in solid state (ppy)2Ir(dbm) crystals.  相似文献   

2.
Metallocyclic platinum(II) complexes coordinating with 2-phenylpyridine (ppy) and a series of β-diketone ancillary OO ligands, (ppy)Pt(acac), (ppy)Pt(ba), (ppy)Pt(dbm), and (ppy)Pt(tta) (acac = acetylacetone, ba = benzoylacetone, dbm = dibenzoylmethane, tta = thenoyltrifluoroacetone) were synthesized. The crystal structure, absorption, emission, quantum yield and phosphorescence life time were characterized. As the conjugative π system of the OO ligand increases in the order acac < ba < dbm, or there is a group -CF3to attract the electron density of the tta ligand, the quantum yield decreases in the order (ppy)Pt(acac) > (ppy)Pt(ba) > (ppy)Pt(dbm) > (ppy)Pt(tta) due to an energy back-flow from ppy to the OO ligand, a trend also in contrast to the phosphorescence emission spectra and time decay (biexponentially, ∼0.7-13 μs).  相似文献   

3.
The synthesis, X-ray crystal structure and luminescence properties of a new bis-cyclometalated heteroleptic complex, [Ir(ppy)2(HDPA)](PF6) (1, ppy = 2-phenylpyridine, HDPA = 2,2′-dipyridylamine), are reported. Both at room temperature and 77 K, complex 1 exhibits intense blue emission, assigned as 3MLCT [dπ(Ir)-π(HDPA)] phosphorescence. Analysis of voltammetric data also provides evidence in support of this assignment.  相似文献   

4.
A new lanthanoid 8-quinilinolates type structure was found for lanthanum complex La3(qMe)9(H)(NO3) (1) formed in the reaction of La(NO3)3 · 6H2O with 2-methyl-8-hydroxyquinoline (HqMe) and aqueous ammonia in methanol. The molecule of 1 contains three La atoms connected by six bridging quinolinolate ligands, two terminated η2-coordinated qMe ligands, one terminated η1-coordinated qMe ligand and one terminated NO3 group. The geometry and 1H NMR spectrum of the complex suggest that it is bearing −1 charge balanced by proton, which was localized objectively. The arrangement of the compound in crystalline state and in pyridine solution is discussed. Syntheses of water- and acid residual-free mononuclear lanthanoid quinolinolates La(qMe)3(py)2 (2) and Lnq3(py)2, (Ln = Y (3), La (4), Sm (5), Eu (6), Tb (7), Er (8), Tm (9); q = 8-quinolinolate, py = pyridine) by the reaction of appropriate amido complexes Ln[N(SMe3)2]3 with 3 equiv. of 2-methyl-8-hydroxyquinoline or 8-hydroxyquinoline in pyridine solution is also described. The complex Laq3(Ph3PO)2 (10) was prepared by treatment of 4 with triphenylphosphine oxide in pyridine solution. Lanthanum 2 complex revealed photoluminescence intensity ca. 3 × 103 times higher than that of the compound 1 prepared by the traditional way in water-alcohol medium. These data give a ground to consider the Lnq3(py)2 complexes as promising material for design of light-emitting devices.  相似文献   

5.
A new convenient high-yield synthesis of the tris-cyclometalated complexes fac-[Rh(ppy)3] (4; ppy = 2-phenylpyridinato) was developed. Complex 4 was prepared in a kind of one-pot synthesis starting from in situ prepared [Rh(acac)(coe)2] (2) which was heated in refluxing 2-phenylpyridine for a short time. After purification by filtration over alumina, compound 4 was obtained in yields of 65%. Also [Rh(acac)(ppy)2] (3) was prepared in a similar manner by oxidative addition of Hppy in refluxing toluene in high yields. In contrast to previous findings with the analogous iridium compounds, there was not any hint at the formation of the isomer mer-[Rh(ppy)3] using similar reaction conditions as applied for iridium. Furthermore the compound [{Rh(μ-Cl)(ppy)2}2] (5) was prepared from [{Rh(μ-Cl)(coe)2}2] (1) and Hppy in refluxing toluene in nearly quantitative yield.  相似文献   

6.
In this study we report on the characterization of a series of pentacoordinate aluminum 8-hydroxyquinolines, AlQ2X (X = F, Cl, Br), composed of two 8-hydroxyquinoline (8-HQ) groups and one halogen ligand. These were prepared by reacting 8-hydroxyquinoline and dialkylaluminum halide stoichiometrically. The λmaxs of absorption and emission were in the range of 385-388 and 515-516 nm, respectively, which were similar to AlQ3. The molar absorptivity of AlQ2X is similar regardless of the X group but emission efficiency of AlQ2X is 2-3 fold higher than that of AlQ3 when X = F or Br, but not when X = Cl. This result can be attributed to decreased quenching of energy due to a less steric environment by reducing quinolinate content. The overall molecular orbital structures and the absorption spectra of AlQ2X and AlQ3 are very similar due to a single quinolinate unit. The value of the potential difference of AlQ2Xs between anodic and cathodic waves (ΔE = 3.12 V) is close to the estimated HOMO-LUMO energy gap (the optical band gap, ΔEoptical ∼ 1240/λmax), 3.19 eV. Detailed optical and electrochemical properties of AlQ2X are discussed.  相似文献   

7.
A novel mixture cations templated indium phosphates, Li(C2N2H10)[In2(HPO4)3(PO4)], has been synthesized under mild hydrothermal conditions and characterized by elemental analysis and FT-IR spectrum. The crystal structure of title compound was determined by single crystal X-ray diffraction data. It belongs to monoclinic, space group P2/n with unit cell dimension a = 9.4692(13) Å, b = 9.1622(12) Å, c = 9.7063(14) Å, β = 117.5620(10)°. Its structure is characterized as a three-dimensional open-framework with 8-membered ring channels along a axis, where the inorganic lithium cation and organic double-protonated ethylenediamine cation are located and interact with the framework both electrostatically and via hydrogen bonds of N-H?O.  相似文献   

8.
Reactions in water between the di-sodium salt of amino terepthalic acid (C8H3NO4Na2) and a lanthanide chloride lead to a family of 3D-coordination polymers with general chemical formula [Ln(C8H3NO4)(C8H4NO4), O] where Ln = La-Eu (except Pm) and 8 ? n ? 11. All these compounds are isostructural. High quality single crystals of [Ln(C8H3NO4)(C8H4NO4), nH2O] with Ln = La-Sm (except Pm) and 8 ? n ? 11 have been obtained by slow diffusion in agar-agar gels. The crystal structure has been solved for the Nd-containing compound. This compound crystallizes in the cubic system, space group Ia-3 (no. 206) with a = 26.8056(5) Å. The crystal structure can be described as the juxtaposition of large channels with square cross-section.The channels are filled by highly disordered crystallization water molecules. The dehydration of the compounds by freeze-drying is possible and most of the crystallization water molecules can be removed without destruction of the molecular skeleton. The partially dehydrated compounds have general chemical formula [Ln(abdc)(Habdc), 2H2O] with Ln = La-Eu except Pm. The porosity of the Nd-containing compound has been estimated by computational methods to 2170 m2 g−1. This dehydrated compound reversibly binds water when exposed to wet atmosphere restoring the initial hydrated phase.  相似文献   

9.
A new compound Gd4(H2O)5(HPO3)6 (1) was isolated from the reaction of gadolinium chloride GdCl3 · nH2O with H3PO3 under hydrothermal conditions. The crystal structure was solved by means of single-crystal X-ray diffraction. The structure is composed of parallel gadolinium-oxygen polyhedra chains connected by phosphite ions, and shows three-dimensional (3D) open-framework with eight-membered ring (8MR) channels. The structure is different from its counterpart Eu2(H2O)2.5(PO3H)3 due to the effect of lanthanide contraction. The intensive intrinsic UV emission of this compound at λmax = 312 nm comes from the spin-forbidden 6P7/2 → 8S7/2 f-f transition of the Gd3+ ions. No magnetic order was observed for this compound.  相似文献   

10.
The electrochemistry and electrogenerated chemiluminescence (ECL) of Pb4Br11 3− in acetonitrile solution is reported. Pb4Br11 3− is formed in situ by the reaction of lead(II) and bromide ions with ECL generated upon sweep to positive potentials using tri-n-propylamine (TPrA) as an oxidative-reductive coreactant. An ECL efficiency (φecl) of 0.0079 was obtained compared to Ir(ppy)3 (ppy=2-phenylpyridine; φecl=1). The ECL intensity peaks at a potential corresponding to oxidation of TPrA and Pb4Br11 3− indicating that emission is from the lead-bromide cluster.  相似文献   

11.
Several iridium complexes containing trifluoromethyl-substituted phenyl pyridine based ligands have been synthesized and characterized to try to investigate the effect of trifluoromethyl group and its position on physical properties. The complexes have the general structure of (C-N)2Ir(LX), where the C-N are 2-phenylpyridine (ppy), 2-(3,5-bis-trifluoromethylphenyl)pyridine (fmppy), 2-(3,5-bis-trifluoromethylphenyl)-4-methylpyridine (fmpmpy), 2-(3,5-bis-trifluoromethylphenyl)-5-trifluoromethylpyridine (tfmppy) and the LX are 2-picolinic acid (pic) and acetylacetonate (acac). The (tfmppy)2Ir(pic) was characterized using X-ray crystallography. The absorption, emission, and thermostability of the complexes were systematically investigated. Introduction of CF3 substituents into 2-phenylpyridine in (ppy)2Ir(pic) lead to some decrease in the sublimation temperature, which is more suitable to devices fabrication. The experimental results revealed that the emissive colors of these complexes could be finely tuned by suitable incorporation of trifluoromethyl substituents on the 2-phenylpyridine ligand, obtaining bright green-blue emission λmax values from 471 to 489 nm in CH2Cl2 solution at room temperature, with high solution quantum efficiencies ranging from 0.37 to 1.89 relative to Ir(ppy)3.  相似文献   

12.
The reaction of Ln(III) ions with the precursor [Cu(opba)]2− in DMSO has afforded a series of isostructural compounds of general chemical formula Ln2[Cu(opba)]3(DMSO)6(H2O) · (H2O), where Ln(III) stands for a lanthanide ion and opba stands for ortho-phenylenebis(oxamato). The crystal structure has been solved for the Gd(III) containing compound. It crystallizes in the orthorhombic system, space group Pbn21 (No. 33) with a = 9.4183(2) Å, b = 21.2326(4) Å, c = 37.9387(8) Å and Z = 4. The structure consists of ladder-like molecular motifs parallel to each other. To the best of our knowledge, this is the first Ln(III)Cu(II) coordination polymer family exhibiting the same crystal structure over the whole lanthanide series. The magnetic properties of the compounds have been investigated and the magnetic behavior of the Gd(III) containing compound was studied in more detail.  相似文献   

13.
Rhodium(III) complexes of 1,2-naphthoquinone-1-oxime (1-nqo) [Rh(1-nqo)L2Cl2] 1-3 [1, L = 4-methylpyridine (mpy); 2, L = 4-phenylpyridine (ppy); 3, L = 4-acetylpyridine (apy)] were prepared. The structure of complex 1 is analyzed by single crystal X-ray crystallography. All of the complexes were characterized by mass spectrometry, 1H-1H COSY NMR and FT-IR. UV-Vis absorption spectroscopy and cyclic voltammetry were employed to investigate the electronic transition behaviors of the complexes. The complexes displayed irreversible metal-localized two-electron reductions from RhIII to RhI on the cyclic voltammogram. While the low-energy absorptions at λmax of 488-490 nm on the UV-Vis spectra of the complexes were related to metal to 1-nqo ligand charge transfer [MLCT, dπ(Rh) → π∗(1-nqo)] and chloride to 1-nqo ligand charge transfer [LLCT, pπ(Cl) → π∗(1-nqo)] based on the theoretical calculations using time-dependent density functional theory (TD-DFT).  相似文献   

14.
A new polyoxomolybdate compound {Co(phen)3}2[Mo6O19][Mo8O26] · 2H2O (1) containing hexacoordinated {Co(phen)3}3+ (phen = 1,10-phenanthroline) as counter ion has been hydrothermally synthesized and characterized by the elemental analyses, IR spectrum, TG analysis, and the single crystal X-ray diffraction. The crystal structure consists of four independent molecular moieties: {Co(phen)3}3+, {β-Mo8O26}4−, {Mo6O19}2−, and water molecules of crystallization.  相似文献   

15.
The crystal structure and magnetic properties of a penta-coordinate iron(III) complex of pyridoxal-4-methylthiosemicarbazone, [Fe(H2mthpy)Cl2](CH3C6H4SO3), are reported. The synthesised ligand and the metal complex were characterised by spectroscopic methods (1H NMR, IR, and mass spectroscopy), elemental analysis, and single crystal X-ray diffraction. The complex crystallises as dark brown microcrystals. The crystal data determined at 100(1) K revealed a triclinic system, space group (Z = 2). The ONSCl2 geometry around the iron(III) atom is intermediate between trigonal bipyramidal and square pyramidal (τ = 0.40). The temperature dependence of the magnetic susceptibility (5-300 K) is consistent with a high spin Fe(III) ion (S = 5/2) exhibiting zero-field splitting. Interpretation of these data yielded: D = 0.34(1) cm−1 and g = 2.078(3).  相似文献   

16.
《Inorganica chimica acta》2006,359(5):1666-1672
Two novel ligands containing a functionalized N  N chelating moiety (pbpy-OBut and tpy-COOH, respectively) were treated with [Ir(ppy)2(μ-Cl)]2 (ppy = 2-(2-pyridyl)phenyl), leading to the cationic cyclometalated complexes [Ir(ppy)2(pbpy-OBut)]+ (2) (pbpy-OBut = 4-{4′-(4-phenyloxy)-6′-phenyl-2,2′-bipyridyl}butene) and [Ir(ppy)2(tpy-COOH)]+ (3) (tpy-COOH = 4′-(4-carboxyphenyl)-2,2′:6′,2″-terpyridine). Complexes 2 and 3 exhibit intense room temperature luminescence both in solution and as solid films. Assignment of the emissive behavior to a 3LLCT (ppy-to-N  N) excited state is proposed.  相似文献   

17.
A new convenient synthesis and the crystallographic characterization of [Ir(acac)(coe)2] (2, acac = acetylacetonato; coe = cis-cyclooctene) are described. The title compound crystallized from THF/ethanol in two modifications (monoclinic P21/c, 2a, and triclinic , 2b). Complex 2 represents an efficient starting material in the synthesis of mononuclear iridium(III) complexes containing cyclometalated 2-phenylpyridinato ligands using oxidative addition reactions of the corresponding ligands towards 2. Thus [Ir(acac)(ppy)2] (3, ppy = 2-phenylpyridinato) and [Ir(ppy)3] (4) (mer, 4a; fac, 4b) were prepared in excellent yields and short reaction times in a kind of one-pot procedure starting from [{Ir(μ-Cl)(coe)2}2] (1). Furthermore a convenient synthesis of [{Ir(μ-Cl)(ppy)2}2] (5) from 1 and Hppy is described.  相似文献   

18.
The bifunctional material [RuNO(en)2Cl]3[Cr(OH)6 Mo6O18]2 · 17H2O (en - ethylenediamine), comprisingphotochromic and paramagnetic molecular blocks, have been synthesised. The crystal structure, photochromic and magnetic properties of the compound have been investigated.  相似文献   

19.
The reaction of the cyclometalated IrIII dimer [{(ppy)2Ir}2(μ-Cl)2] (ppyH = 2-phenylpyridine) with silver triflate followed by a multidentate ligand [1,4-bis[3-(2-pyridyl)pyrazolylmethyl]benzene (bppb), 1,3,5-tri[3-(2-pyridyl)pyrazolylmethyl]-2,4,6-trimethylbenzene (tppb), 2,4,6-tris(2-pyridyl)-1,3,5-triazine (tptz), 2-chloro-4,6-bis(dipyridin-2-ylamino)-1,3,5-triazine (cddt) or 2,4,6-tris(dipyridin-2-ylamino)-1,3,5-triazine (tdat)] afforded di- or trinuclear compounds: [{Ir(ppy)2}2(μ-bppb)](OTf)2 (1), [{Ir(ppy)2}3(μ-tppb)](OTf)3 (2), [{Ir(ppy)2}2(μ-tptz-OH)](OTf) (3), [{Ir(ppy)2}2(μ-cddt)](OTf)2 (4) and [{Ir(ppy)2}2(μ-tdat)](OTf)2 (5). All of these compounds contain cationic metal cores with corresponding triflate counter anions. The molecular structures of 1-4 reveal that the structural feature of the Ir(ppy)2 center of the starting precursor is conserved in the products. Also, because of the nature of the ligands, there is virtually no electronic communication between the IrIII centers except in 3 where a ring hydroxylation at the triazine carbon atom is effected upon metalation. Compounds 1-5 are robust in solution where they retain their structural integrity. The UV-Vis and emission spectra of 1-5 compounds are very similar to each other with the exception of 3 which seems to possess a different electronic structure. All the compounds are luminescent at room temperature. The emission bands indicate significant contribution from 3LC. Increase in the number of ‘Ir(ppy)2’ units does not have any effect on emission color.  相似文献   

20.
Ligand-field photolysis of K4[Mo(CN)8] · 2H2O in 98% N2H4 · H2O yields the catalytical decomposition of N2H4 into NH3 and N2. From irradiated solutions of octacyanomolybdate(IV) both in NH3(aq) and 98% N2H4 · H2O(l) as solvents, the salt of the formula (PPh4)2[Mo(CN)4O(NH3)] · 2H2O was isolated. The salt is not formed by direct ligand replacement in tetracyanooxomolybdate(IV) ions derived from K3Na[Mo(CN)4O2] · 6H2O as the solute in similar conditions. The X-ray crystal structure and spectral properties of (PPh4)2[Mo(CN)4O(NH3)] · 2H2O are described. The improved method of the synthesis of K4[Mo(CN)8] · 2H2O is also presented.  相似文献   

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