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1.
A homoleptic copper(II) complex supported by methyliminodiacetate [ = MIDA] has been prepared and characterized by elemental, infra-red, X-ray diffraction and magnetic methods. The complex assembles as a two-dimensional lattice in which the copper centers are arranged in a square grid, bridged by the carboxylate moieties of the ligand. [CuII4MIDA4] crystallizes in the tetragonal system P-4 21 c (a = 9.8943(5), b = 9.8943(5), c = 14.4687(7) Å, Z = 8, R = 0.0495). Each CuII atom displays severely distorted square pyramidal geometry (τ = 0.44) and is bridged to four additional copper centers by a syn-anti arrangement of the carboxylate groups. Within the sheet, the copper centers are separated by approximately 4.96 Å. The sheets are layered by arranging the copper squares directly on top of one another, resulting in parallel channels that extend throughout the material. Variable temperature magnetic susceptibility measurements reveal the presence of ferromagnetic exchange between the spin carriers within each two-dimensional sheet and antiferromagnetic exchange across the layers.  相似文献   

2.
A novel copper(II)-radical complex [Cu(NITmPy)(PDA)(H2O)] · (H2O) (1) (NITmPy = 2-(3′-pyridyl)-4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide, H2PDA = 2,6-pyridinedicarboxylic acid) has been synthesized and structurally characterized by X-ray diffraction methods. It crystallizes in the triclinic space group . The Cu(II) ion exists in a distorted square pyramid environment. The molecules of [Cu(NITmPy)(PDA)(H2O)] · (H2O) are connected as a two-dimensional structure by the intermolecular hydrogen bonds. Magnetic measurements show intramolecular ferromagnetic interactions between NITmPy and Cu(II) ion and intermolecular antiferromagnetic interactions in 1.  相似文献   

3.
The ligand 1,3-bis[(2-dimethylaminoethyl)iminomethyl]benzene (baib) reacts with [Cu(MeCN)4][ClO4] to form a binuclear copper(I) complex . Crystal structure analysis reveals that the distorted tetrahedral coordination of each copper(I) center is satisfied by one bidentate arm of each ligand. The complex undergoes ready aromatic ring hydroxylation at position 2 of the phenyl ring when reacted with molecular oxygen in MeCN/MeOH/CH2Cl2, producing a four-coordinate μ-phenoxo- and μ-hydroxo-bridged dicopper(II) complex, [Cu2(baib-O)(OH)(OClO3)2] · 1.5H2O (2) (baib-OH: 1,3-bis[(2-dimethylaminoethyl)iminomethyl]phenol). This reaction mimics the reactivity of the copper monooxygenase tyrosinase. A trend is observed for the extent of aromatic ring hydroxylation (25 °C): MeCN > MeOH > CH2Cl2. Cyclic voltammetric experiment of 1 in MeCN reveals an appreciably high redox potential (anodic peak potential, Epa = 0.69 V versus SCE) for the redox process. Complex 2 has been characterized by single-crystal X-ray crystallography. Variable temperature (60-300 K) magnetic susceptibility measurements on 2 establish that the copper(II) centers in 2 are antiferromagnetically coupled (2J = −280 cm−1).  相似文献   

4.
The macrocyclic symmetrical and a series of unsymmetrical binuclear copper(II) complexes have been synthesized by using mononuclear complex [CuL] [3,3′-((1E,7E)-3,6-dioxa-2,7-diazaocta-1,7-diene-1,8-diyl)bis(3-formyl-5-methyl-2-diolato)copper(II)]. Another compartment of the [CuL] have been condensed with various diamines like 1,2-bis(aminooxy)ethane (L1), 1,2-diamino ethane(L2a), 1,3-diamino propane(L2b), 1,4-diamino butane(L2c), 1,2-diamino benzene(L2d), 1,8-diamino naphthalene(L2e) and characterized by elemental, spectroscopic, and X-ray crystallographic methods. The influence of the coordination geometry and the ring size of the binucleating ligands on the electronic, redox, magnetic, catecholase activity, DNA binding and cleavage properties have been studied. The molecular structures of the symmetrical binuclear complex [Cu2L1(H2O)2](ClO4)2 (1) and unsymmetrical binuclear complex [Cu2L2b(ClO4)(H2O)]ClO4 (2b) were determined by X-ray crystallography. Both of them were discrete binuclear species in which each Cu(II) ions are in distorted square pyramid. The Cu?Cu distances vary from 3.0308 (2b) to 3.0361 Å (1). Electrochemical studies evidenced that two quasi-reversible one electron-transfer reduction waves −0.91 to −1.01 V, −1.26 to −1.55 V) for binuclear complexes are obtained in the cathodic region. Cryomagnetic investigation of the binuclear complexes reveals a weak antiferromagnetic spin exchange interaction between the Cu(II) ions within the complexes (−2J = 104.4-127.5 cm−1). The initial rate (Vin) for the oxidation of 3,5-di-tert-butylcatechol to o-quinone by the binuclear Cu(II)complexes are in the range 3.6 × 10−5 to 7.3 × 10−5 Ms−1. The binuclear Cu(II) complexes are avid binders to calf thymus DNA. The complexes display significant oxidative cleavage of circular plasmid pBR322 DNA in the presence of mercaptoethanol using the singlet oxygen as a reactive species. The aromatic diamine condensed macrocyclic ligands of copper(II) complexes display better DNA interaction and significant chemical nuclease activity than the aliphatic diamine condensed macrocyclic Cu(II) complexes.  相似文献   

5.
Novel stable dark-green solid adducts (2) were isolated from the reaction of 2-(4,4,5,5-tetramethyl-3-oxylimidazoline-1-oxide)-5-bromopyridine (1) with copper(II)-hexafluoroacetylacetonate hydrate (Cu(hfac)2 · xH2O), namely [12 • {Cu(hfac)2}3]. The X-ray structure revealed that, the complex is linear and centrosymmetric in the triclinic space group. The striking feature of the complex is, the presence of two types of copper coordination geometries with the radical 1, a distorted octahedron at the center and two terminal octahedron structures, where the copper and the nitronyl nitroxide oxygen binding is stronger in the latter case due to “chelation effect”. The central copper is surrounded by O6 donor sets and the terminal coppers are surrounded by N,O5 donor sets. The three copper ions in the complex are collinear with shortest intramolecular metal-metal distance ca. 7.75 Å. The angles between Cu-O-N also differ considerably due to the different overlapping modes of nitronyl nitroxide oxygen with copper, for chelating type it is 111.25° and for the non-chelating one it is 142.85°. Two exchange couplings are possible for this kind of system. The magnetic behavior shows that the coupling is antiferromagnetic between the radical and the terminal coppers, with J1=−440 cm−1 and weakly ferromagnetic between the central copper and the neighboring radicals with J2=10 cm−1.  相似文献   

6.
A series of novel copper(II) complexes, L2Cu with newly synthesized 3,5--salicylaldimine (or 5--salicylaldimine) ligands derived from 2,4-di-tert-butyl phenol (or 4-tert-butyl phenol) and alkyl (aryl) amines have been prepared and their spectroscopic (IR, UV-Vis, ESI-MS), X-ray, magnetic and redox properties have been investigated. The X-ray crystallography analysis shows that all complexes are monomeric and their copper(II) centers are surrounded by phenolate oxygens and imine nitrogen atoms. Therefore, the coordination sphere around the copper atoms is N2O2 as seen in galactose oxidase active site. In addition, the geometric configurations of all complexes are square planar or slightly distorted square planar. The crystal system for all complexes is monoclinic, except for which is orthorhombic. The temperature dependence of magnetic susceptibility of complexes confirms the mononuclear structure of complexes. Oxidation of the Cu(II) complexes yielded the corresponding Cu(II)-phenoxyl radical species during the cyclic voltammetry experiments.  相似文献   

7.
Hydrothermal chemistry was used to prepare the bimetallic organic-inorganic hybrid oxide [Cu(I)Cu(II)2(trz)2Mo4O13(OH)] · 6H2O (1 · 6H2O). The structure consists of chains linked through into a three-dimensional framework. The structures of the simple metal-triazole phases [MoO3(Htrz)0.5] (2) and [Cu(trz)] (3) are also reported. Compound 2 is two-dimensional, constructed from corner-sharing {MoO5N} octahedra. Compound 3 consists of {Cu(trz)}n chains linked through weak Cu?Cu contacts into a virtual layer.  相似文献   

8.
The preparation and magnetic properties of three copper(II) compounds of formulae [Cu2(bpcam)2(H2O)2(C2O4)] (1), [Cu2(bpcam)2(H2O)4(C4O4)] · 10 H2O (2) and Cu2(bpcam)2(C5O5)(H2O)3 (3) [bpcam = bis(2-pyrimidyl)amidate, and are reported. The structures of two of them (1 and 2) have been solved by single crystal X-ray diffraction and consists of centrosymmetric discrete copper(II) dinuclear units bridged by bis-bidentate oxalate (1) and bis-monodentate squarate (2), with the bpcam group acting as a terminal tridentate ligand. Each copper atom in 1 exhibits a distorted elongated octahedral coordination geometry. Three bpcam nitrogen atoms and one oxalate oxygen define the basal plane while the other oxalate oxygen and a water molecule take up the axial positions. Each copper atom in 2 is in an elongated octahedral surrounding with three bpcam nitrogen atoms and one squarate oxygen in the equatorial plane and two water molecules in the axial positions. The intramolecular copper-copper separations are 5.677(1) (1) and 7.819(53) Å (2). Magnetic susceptibility measurements for 1-3 in the temperature range 1.9-290 K show the occurrence of weak ferromagnetic interactions through oxalato (J = +0.75 cm−1) and squarato (J = +1.26 cm−1), the Hamiltonian being defined by . These values are analyzed and discussed in the light of the available magneto-structural data for analogous systems. The quasi-Curie law observed in 3 (θ = −1.15 K) contrasts with the significant antiferromagnetic interaction through bis-chelating croconate in other structurally characterized croconate-bridged copper(II) complexes and rules out the presence of bridging croconate in this compound.  相似文献   

9.
Coordination polymers Cu(l-Pro)(ClO4)(H2O)2 (1) and Cu3(Gly)4(H2O)2(NO3)2 (2) were synthesized and characterized structurally. Compound 1 possesses the structure of 1D chain, where Cu(II) ions are linked by carboxyl-group in syn-anti conformation in equatorial-equatorial mode. Compound 2 is polymeric chain, consisting from trinuclear blocks Cu3(Gly)4(H2O)22+. In each of these units Cu(II) ions are linked by carboxyl-group in the same way as in 1, while trinuclear units Cu3(Gly)4(H2O)22+ are linked by NO3 ions, acting as the bridges between Cu(II) ions of neighboring trinuclear units. Circular dichroism properties of 1 were studied in solid state and solution. Magnetic measurements revealed that there were ferromagnetic exchange interactions between Cu(II) ions in 1 (J = +1.22(1) cm-1 for Hamiltonian ) and 2 (J = +1.17(2) cm-1 for Hamiltonian ).  相似文献   

10.
A new series of dinuclear squarato-bridged nickel(II) and copper(II) complexes [Ni2(2,3,2-tet)21,3-C4O4)(H2O)2](ClO4)2 (1), [Ni2(aepn)21,3-C4O4)(H2O)2](ClO4)2 (2), [Cu2(pmedien)21,3-C4O4)(H2O)2](ClO4)2.4H2O (3) and [Cu2(DPA)21,2-C4O4)(H2O)2](ClO4)2 (4) where is the dianion of 3,4-dihydroxycyclobut-3-en-1,2-dione (squaric acid), 2,3,2-tet = 1,4,8,11-tetraazaundecane, aepn = N-(2-aminoethyl)-1,3-propanediamine, pmedien = N,N,N′,N″,N″-pentamethyldiethylenetriamine and DPA = di(2-pyridylmethyl)amine were synthesized and structurally characterized by X-ray crystallography. The spectral and structural characterization as well as the magnetic behaviour of these complexes is reported. In this series, structures consist of the groups as counter ions and the bridging the two M(II) centers in a μ-1,3- (1-3) and in a μ-1,2-bis(monodentate) (4) bonding fashions. The coordination geometry around the Ni(II) ions in 1 and 2 is six-coordinate with distorted octahedral environment achieved by N atoms of the amines and by one or two oxygen atoms from coordinated water molecules, respectively. In the Cu(II) complexes 3 and 4, a distorted square pyramidal geometry is achieved by the three N-atoms of the aepn or DPA and by an oxygen atom from a coordinated water molecule. The electronic spectra of the complexes in aqueous solutions are in complete agreement with the assigned X-ray geometry around the M(II) centers. The complexes show weak antiferromagnetic coupling with ∣J∣ = 1.8-4.2 cm−1 in the μ-1,3- bridged squarato compounds 1-3, and J = −16.1 cm−1 in the corresponding μ-1,2- bridged squarato complex 4. The magnetic properties are discussed in relation to the structural data.  相似文献   

11.
A μ-alkoxo-μ-acetato trinuclear copper(II) complex, [Cu3(H2tea)(Htea)(CH3COO)2](ClO4) 1, has been synthesized by reacting copper(II) perchlorate, triethanolamine and sodium acetate. The unit cell contains two centrosymmetric, crystallographically independent trinuclear Cu(II) complexes and two ions. The crystallographically independent trinuclear Cu(II) complexes differ mainly in some of their geometry parameters. The coordination environment of the central copper atom is square-planar, in one trinuclear entity, and elongated octahedral in the other one (in this last case, the coordination number of the central copper atom increases through the semicoordination of an oxygen atom arising from the aminoalcohol). The acetato groups exhibit the classical syn-syn bridging mode. The distances between the copper(II) ions in the two entities are, respectively: 3.043(3) and 3.034(4) Å. The cryomagnetic investigation of 1 reveals a ferromagnetic interaction between the copper(II) ions (J = +84 cm−1), which is due to a countercomplementary effect of the acetato and alkoxo bridges.  相似文献   

12.
A facile synthetic procedure has been used to prepare one five-coordinate and four six-coordinate copper(II) complexes of 4′-chloro-2,2′:6′,2″-terpyridine (tpyCl) ligand with different counterions (, , , , and ) in high yields. They are formulated as [Cu(tpyCl-κ3N,N,N′′)(SO4-κO)(H2O-κO)] · 2H2O (1), trans-[Cu(tpyCl-κ3N,N,N″)(NO3-κO)2(H2O-κO)] (2), [Cu(tpyCl-κ3N,N,N″)2](BF4)2 (3), [Cu(tpyCl-κ3N,N,N″)2](PF6)2 (4) and [Cu(tpyCl-κ3N,N,N″)2](ClO4)2 (5) and versatile interactions in supramolecular level including coordinative bonding, O-H?O, O-H?Cl, C-H?F, and C-H?Cl hydrogen bonding, π-π stacking play essential roles in forming different frameworks of 1-5. It is concluded that the difference of coordination abilities of the counterions used and the experimental conditions codominate the resulting complexes with 1:1 or 1:2 ratio of metal and ligand.  相似文献   

13.
A new tris(pyridylhydrazonyl)methane ligand, HC[N(Me)NC(H)Py]3 (L2) (Py = pyridyl), has been synthesized. The latter is accessible from triethyl orthoformate and 2-(2-methylhydrazono)methylpyridine in 63% isolated yield. We have investigated its coordination chemistry towards copper ions and compared the results with those obtained for the recently developed multifunctional ligand, (S)P[N(Me)NC(H)Py]3 (L1). The copper(II) complexes [Cu(L1)](OTf)2 (3) and [Cu(L2)](OTf)2 (4) (OTf = triflate, (O3SCF3)) are mononuclear with the cations coordinated by three imino and three pyridine nitrogen atoms. Almost axial symmetric EPR spectra have been obtained in frozen solutions at X-band. The spectra show resolved hyperfine couplings to the copper nuclei on one of the three g values. X-ray structural analyses revealed in each case a cis bond distortion and a trigonal twist due to Jahn-Teller effects. The CuII/CuI reduction potentials of 3 and 4 were shown to be remarkably low ( = −0.11 V for 3;  = −0.34 V for 4), especially for 3 consisting of the phosphorus supported ligand L1. The corresponding copper(I) complexes [Cu(L1)](OTf) (5) and [Cu(L2)](OTf) (6) are accessible by reduction using decamethyl ferrocene. Both copper(I) complexes have been characterized in detail including X-ray structure analyses.  相似文献   

14.
A series of copper (II) complexes having the general formula Cu(phen)n(dicnq)2−nCl2 (n = 0,1,2) (1,10-phenanthroline (phen) and/or 6,7-dicyanodipyridoquinoxaline (dicnq) were synthesized and characterized by optical, elemental analysis and IR. The reactions of oxidizing (OH) and reducing () radicals with these complexes were studied by pulse radiolysis. Their absorption spectra have bands in the UV region (?350 nm) consisting of an intense π → π∗ transition due to the ligands (ε ∼ 105 dm3 mol−1 cm−1) and weak MLCT (dπ → π∗) band in the visible region and are non-luminescent. The OH radical reacts with all complexes at diffusion controlled rates and reacts by addition to the ligands and in the case OH adduct of Cu(dicnq)2Cl2, an intramolecular charge transfer followed deprotonation resulting in Cu(I) complex was noticed. The rates of reaction of with Cu(II) complexes are high (k ≈ 1010 dm3 mol−1 s−1) and the transient spectra show absorption maximum at 440 nm indicating reduction of Cu(II) to Cu(I).  相似文献   

15.
Five cadmium halides with N-donor ligands were synthesized under the hydrothermal conditions and characterized by X-ray single-crystal diffraction. The isostructural [CdX2(2,2′-bpy)] (X = I 1, Br 2, bpy = bipyridine) (1) possess 3-D supramolecular network structures based on 1-D zigzag-type CdX2 chains extended by bpy molecules via non-covalent C-H?X hydrogen-bonded interactions. The 3-D porous [CdBr2(pip)] (pip = piperazine) (3) is formed through a linkage of 1-D zigzag-type CdBr2 chains by pip bridges. The heteronuclear dimetal-iodo cluster [Cu(phen)2CdI4] (phen = phenanthroline) (4) consists of a trigonal bipyramidal Cu(II) center and a tetrahedral Cd(II) center linked by a μ2-I bridge. The ionic [Co(dien)2][CdI4] (dien = diethylenetriamine) (5) comprises an octahedral cation and a tetrahedral anion.  相似文献   

16.
Copper(II) complexes of general empirical formula, CuX(Hagpa) · nH2O and Cu(agpa) · 2H2O (H2agpa = aminoguanizone of pyruvic acid, X = Cl, Br, , CH3COO, , n = 0, 1, 1.5, 2), have been synthesized and characterized by IR, EPR spectroscopy and X-ray crystallography. The IR spectra of the complexes showed the ONN coordination of the ligand to copper(II) ion. The crystal structures of H2agpa · H2O and complexes [Cu(Hagpa)Br] and [Cu2(Hagpa)2(H2O)2(SO4)] · DMSO showed an invariable conformation and coordination mode for the uninegatively charged tridentate ligand and revealed the formation of linear polymers in which bromide or sulfate anions bridge the copper(II) ions. The EPR spectra for complexes CuX(Hagpa) · nH2O are described by spin Hamiltonian for S = 1/2, without hyperfine structure. The g-tensor is symmetrical for Cu(agpa) · 2H2O, has tri-axial anisotropy for sulfate complexes, and exhibits axial symmetry for the other compounds investigated.  相似文献   

17.
Two dinuclear copper(II) thioether-oxime complexes ([Cu(DtdoH)]2(ClO4)2 and [Cu(DtudH)]2(ClO4)2 · 2CH3OH) have been synthesized. [Cu(DtdoH)]2(ClO4)2 reacted with excess BF3 · OEt2 to yield [Cu(Thyclops)]ClO4, a -macrocyclized di-oxime. [Cu(DtdoH)]2(ClO4)2 and [Cu(DtudH)]2(ClO4)2 · 2CH3OH are the first representatives of copper(II) thioether oximes which exhibit the classical out-of-plane oximate oxygen-metal dimer structure. [Cu(DtdoH)]2(ClO4)2 and [Cu(Thyclops)]ClO4 have been structurally characterized by single-crystal X-ray diffraction. The geometry about each copper(II) in [Cu(DtdoH)]2(ClO4)2 is a distorted square pyramid (τ = 0.14). The average copper-nitrogen(oxime) bond length is 1.984 Å longer (∼0.03 Å) than the average copper-nitrogen(oxime) bonds in copper(II) bis-glyoximates. The geometry of [Cu(Thyclops)]ClO4 reveals an almost perfect square pyramid (τ = 0.03) of N2S2O donors. Solution, cryogenic glass, and powder ESR spectra show a typical axial pattern, except for the powder spectrum of [Cu(DtudH)]2(ClO4)2 · 2CH3OH which displays a small rhombic distortion. Variable-temperature magnetic susceptibility measurements indicate very weak ferromagnetic interactions in [Cu(DtdoH)]2(ClO4)2, where J = +0.52 cm−1 and very weak antiferromagnetic interactions in [Cu(DtudH)]2(ClO4)2 · 2CH3OH, where J = −0.59 cm−1. Electrochemical measurements reveal that the mixed thioether-oxime coordination environment tends to stabilize Cu(II), as all electrochemical reductions were quasi-reversible or irreversible. [Cu(Thyclops)]ClO4 is more oxidizing than [Cu(DtdoH)]2(ClO4)2 by 0.14 V.  相似文献   

18.
The ligand 1,3-bis[3-(2-pyridyl)pyrazol-1-yl]propane (L8) has afforded six-coordinate monomeric and dimeric complexes [(L8)CoII(H2O)2][ClO4]2 (1), [(L8)NiII(MeCN)2][BPh4]2 (2), [(L8)NiII(O2CMe)][BPh4] (3), and . The crystal structures of 1, 2 · MeCN, 3, and 4 revealed that the ligand L8 is flexible enough to expand its coordinating ability by fine-tuning the angle between the chelating fragments and hence folds around cobalt(II)/nickel(II) centers to act as a tetradentate chelate, allowing additional coordination by two trans-H2O, cis-MeCN, and a bidentate acetate affording examples of distorted octahedral , , and coordination. The angles between the two CoN2/NiN2 planes span a wide range 23.539(1)° (1), 76.934(8)° (2), and 69.874(14)° (3). In contrast, complex 4 is a bis-μ-1,3-acetato-bridged (syn-anti coordination mode) dicobalt(II) complex [Co?Co separation: 4.797(8) Å] in which L8 provides terminal bidentate pyridylpyrazole coordination to each cobalt(II) center. To our knowledge, this report provides first examples of such a coordination versatility of L8. Absorption spectral studies (MeCN solution) have been done for all the complexes. Complexes 1-3 are uniformly high-spin. Temperature-dependent (2-300 K) magnetic studies on 4 reveal weak ferromagnetic exchange coupling between two cobalt(II) (S = 3/2) ions. The best-fit parameters obtained are: Δ (axial splitting parameter) = −765(5) cm−1, λ (spin-orbit coupling) = −120(3) cm−1, k (orbital reduction factor) = 0.93, and J (magnetic exchange coupling constant) = +1.60(2) m−1.  相似文献   

19.
A trinuclear copper(II) complex, [Cu3(2,5-pydc)2(Me5dien)2(BF4)2(H2O)2] · H2O 1, has been constructed from 2,5-pyridine-dicarboxylato bridges (2,5-pydc2−) and N,N,N′,N″,N″-pentamethyl-diethylenetriamine (Me5dien) acting as a blocking ligand. The copper ions, within the centrosymmetric trinuclear cations, are connected by two 2,5-pydc2− bridges, with an intramolecular Cu···Cu separation of 8.432 Å. The central copper ion exhibits an elongated octahedral geometry, with semicoordinated ions, while the terminal ones are pentacoordinated (distorted square-pyramidal geometry). The cryomagnetic investigation of 1 reveals an antiferromagnetic coupling of the copper(II) ions (J = −5.9 cm−1, H = −JSCu1SCu2 − JSCu2SCu1a).  相似文献   

20.
The structural and magnetic properties of a series of Cu8 pinwheel clusters with the tritopic ligands 2POMP, 2POPP, Cl2POMP and SEt2POMP are described. Two different ligand binding modes lead to two different arrangements of Cu-Cu bridge connections within the pinwheel. In one case, all the Cu(II) centers are bridged by hydrazone oxygen atoms, and the Cu-Cu distances are all similar (∼4 Å). In the other case, the central Cu(II) centers are bridged by hydrazone oxygen atoms, while the peripheral Cu2+ cations are bridged to the core by diazine (N-N) groups. In both cases, the bridges are orbitally strictly orthogonal and so ferromagnetic exchange dominates. In the complex [(2POMP-2H)4Cu8Br6](CuBr4)(H2O)11 (1) bromide ions bridge the peripheral Cu(II) centers of adjacent Cu8 pinwheel cluster molecules forming a 2D network with additional ions occupying cavities in the lattice. In [(Cl2POMP-2H)4Cu8(N(CN)2)8](H2O)9(CH3CN) (3), nitrogen atoms of the coordinated dicyanamide (dca) ions bound to the peripheral Cu(II) centers interact with ligand bound chlorine atoms of adjacent molecules to form stacks of pinwheels. In [(Set2POMP-2H)4Cu8(H2O)8](PF6) 8(CH3OH)6(CH3CN)1.5 (4) relatively short S?S contacts exist between pinwheels and cause stacking in the extended structure. Surprisingly, there is evidence for long-range magnetic interactions in 3 via the intermolecular contacts, but not in 1, which has direct bonding between pinwheel subunits. Exchange integrals within the pinwheel clusters fall in the rangeJ = 4-7 cm−1.  相似文献   

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