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1.
In aqueous solution N, N′-bis-(4-(5)-imidazolylmethyl)-ethylenediamine-cobalt (II) (CoIMEN2+) takes up molecular oxygen giving μ-dioxygen-μ-hydroxo-bis-[N, N′-bis-(4-(5)-imidazolylmethyl)-ethylenediamine]-dicobalt (II). (Co IMEN)2 O2 (OH)3+ is exceptionally stable against irreversible autoxydation to CoIII species. Its absorption spectrum is very similar to that of the known analogous complex (CoTRIEN)2 O2 (OH)3+. The kinetics of formation and dissociation of (CoIMEN)2O2(OH)3+ are studied by spectrophotometry and with an oxygen specific electrode. The rate of the forward reaction is described by vf = [CoIMEN2+]2 · [O2] · (k1 + k2 · [OH?]) with k1 = 9 · 104 M?2 s?1 and k2 = 1 · 1012M?3 S?1, at 25° and I = 0,2. A mechanism including hydroxylated as well as nonhydroxylated intermediates is proposed. Dissociation is preceeded by protonation of the oxygen adduct. At pH 1–2 the rate of dissociation is independent of [H+] and follows first order kinetics: vD = k3 · [(CoIMEN)2O2(OH)3+] with k3 = 2.15 · 10?2 S?1.  相似文献   

2.
Co3O4, which is of mixed valences Co2+ and Co3+, has been extensively investigated as an efficient electrocatalyst for the oxygen evolution reaction (OER). The proper control of Co2+/Co3+ ratio in Co3O4 could lead to modifications on its electronic and thus catalytic properties. Herein, we designed an efficient Co3O4‐based OER electrocatalyst by a plasma‐engraving strategy, which not only produced higher surface area, but also generated oxygen vacancies on Co3O4 surface with more Co2+ formed. The increased surface area ensures the Co3O4 has more sites for OER, and generated oxygen vacancies on Co3O4 surface improve the electronic conductivity and create more active defects for OER. Compared to pristine Co3O4, the engraved Co3O4 exhibits a much higher current density and a lower onset potential. The specific activity of the plasma‐engraved Co3O4 nanosheets (0.055 mA cm?2BET at 1.6 V) is 10 times higher than that of pristine Co3O4, which is contributed by the surface oxygen vacancies.  相似文献   

3.
Herein, we highlight redox‐inert Zn2+ in spinel‐type oxide (ZnXNi1?XCo2O4) to synergistically optimize physical pore structure and increase the formation of active species on the catalyst surface. The presence of Zn2+ segregation has been identified experimentally and theoretically under oxygen‐evolving condition, the newly formed VZn?O?Co allows more suitable binding interaction between the active center Co and the oxygenated species, resulting in superior ORR performance. Moreover, a liquid flow Zn–air battery is constituted employing the structurally optimized Zn0.4Ni0.6Co2O4 nanoparticles supported on N‐doped carbon nanotube (ZNCO/NCNTs) as an efficient air cathode, which presents remarkable power density (109.1 mW cm?2), high open circuit potential (1.48 V vs. Zn), excellent durability, and high‐rate performance. This finding could elucidate the experimentally observed enhancement in the ORR activity of ZnXNi1?XCo2O4 oxides after the OER test.  相似文献   

4.
Reactions of oxygenated cobalt(II) complexes. IX. Oxidative properties of tetrakis(ethylenediamine)-μ-peroxo-μ-hydroxo-dicobalt(III)
  • 1 VIII s. [1].
  • [(en)2Co(O2, OH)Co(en)2]3+ ( a ) reacts with I? in acidic aqueous solution according to: CoIII(O2, OH)CoIII + 21? + 5H+ ? 2CoIII + 3H2O + I2. Using I? in excess first order rate constants are obtained which, to a first approximation, are independent of [I?]. Comparison with kinetic data of deoxygenation of [(en)2Co(O2, OH)Co(en)2]3+ under analogous conditions suggests that both reactions have the same rate determining step. The singly bridged species [(en)2(H2O)CoO2Co(H2O) (en)2]4+ is shown to be the reactive intermediate in the iodide oxidation (Schema 2).  相似文献   

    5.
    Black‐brown needle‐shaped single crystals of [Co2(en)4(O2)(OH)][C4O4]1.5 · 4H2O (en = ethylenediamine) were prepared in aqueous solution at room temperature [space group P$\bar{1}$ (no.2) with a = 800.20(8), b = 1225.48(7), c = 1403.84(9) pm, α = 100.282(5), β = 94.515(7), and γ = 95.596(6)°]. The Co3+ cations [Co(1), Co(2)] are coordinated in an octahedral manner by four nitrogen atoms stemming from the ethylenediamine molecules and two oxygen atoms each from a hydroxo group and a peroxo group, respectively. Both Co3+ coordination polyhedra are connected by a common corner and by the peroxo group leading to the dinuclear [(en)2Co(O2)(OH)Co(en)2]3+ cation. The squarate dianions, not bonded to Co3+, and the [(en)2Co(O2)(OH)Co(en)2]3+ cations are linked by hydrogen bonds forming a three‐dimensional supramolecular network containing water molecules. Magnetic measurements revealed a diamagnetic behavior indicating a low‐spin electron configuration of Co3+. The UV/Vis spectra show two LMCT bands [π*(O22–) → dσ*(Co3+)] at 274 and 368 nm and the d–d transition (1A1g1T1g) at 542 nm. Thermoanalytical investigations in air show that the compound is stable up to 120 °C. Subsequent decomposition processes to cobalt oxide are finished at 460 °C.  相似文献   

    6.
    Complex Formation of N-(Thiocarbamoyl) benzamidines N-(Thiocarbamoyl)benzamidines 1 and N-(Thiocarbamoyl)-N′-phenyl-benzamidines 2 form in alcoholic solutions with Ni2+, Cu2+, Pd2+, Co3+, and Ag+ ions well crystallized chelates 1a ? h and 2a? h , respectively, with N/S coordination. The X-ray photoelectron spectra evidence the NH group as ligator in the case of chelates of 1 and the increased donor capacity compared with the isosteric oxygen ligator atom bound to nickel. This is confirmed by d-1H-n.m.r. spectroscopy analyzing the value of ΔGc for the rotational barrier for the Et2N group of 1a  相似文献   

    7.
    Co2+‐doped MgGa2O4 nanocrystals were prepared at 500°C by a low‐temperature combustion method without any further calcination. Powder X‐ray diffraction (XRD) indicated that the only crystalline phase in the product was MgGa2O4 with a grain size of 33–36 nm. Scanning electron microscopy (SEM) showed that the products contained pores formed by the gases evolved during the combustion reaction. The excitation and emission spectra of the nanocrystalline powders in the visible and near infrared regions were characteristic of tetrahedral Co2+ ions, suggesting that Co2+ ions replaced tetrahedral Mg2+ ions in the MgGa2O4 crystals. We assigned the visible and near infrared luminescent bands to the spin‐allowed 4T1(4P) → and 4A2(4F) and 4T1(4P) → 4T2(4F) transitions.  相似文献   

    8.
    A mononuclear‐cobalt(II)‐substituted silicotungstate, K10[Co(H2O)2(γ‐SiW10O35)2] ? 23 H2O (POM‐ 1 ), has been evaluated as a light‐driven water‐oxidation catalyst. With in situ photogenerated [Ru(bpy)3]3+ (bpy=2,2′‐bipyridine) as the oxidant, quite high catalytic turnover number (TON; 313), turnover frequency (TOF; 3.2 s?1), and quantum yield (ΦQY; 27 %) for oxygen evolution at pH 9.0 were acquired. Comparison experiments with its structural analogues, namely [Ni(H2O)2(γ‐SiW10O35)2]10? (POM‐ 2 ) and [Mn(H2O)2(γ‐SiW10O35)2]10? (POM‐ 3 ), gave the conclusion that the cobalt center in POM‐ 1 is the active site. The hydrolytic stability of the title polyoxometalate (POM) was confirmed by extensive experiments, including UV/Vis spectroscopy, linear sweep voltammetry (LSV), and cathodic adsorption stripping analysis (CASA). As the [Ru(bpy)3]2+/visible light/sodium persulfate system was introduced, a POM–photosensitizer complex formed within minutes before visible‐light irradiation. It was demonstrated that this complex functioned as the active species, which remained intact after the oxygen‐evolution reaction. Multiple experimental parameters were investigated and the catalytic activity was also compared with the well‐studied POM‐based water‐oxidation catalysts (i.e., [Co4(H2O)2(α‐PW9O34)2]10? (Co4‐POM) and [CoIIICoII(H2O)W11O39]7? (Co2‐POM)) under optimum conditions.  相似文献   

    9.
    The stabilities of the Mn2+-, Co2+-, Ni2+-, Cu2+- and Zn2+-complexes with 2-(carboxymethyl)glutaric acid ( 2 ) and cis,cis-1,3,5-cyclohexanetricarboxylic acid ( 3 ) were measured potentiometrically at 25° and I = 0.5 (KNO3). Beside the complexes ML? protonated species MLH and MLH are also formed. Their stability constants are given in Table 1. A comparison between the stabilities of 2 or 3 and those of acetate, as a model for a monocarboxylate, or succinate and glutarate, as examples for dicarboxylates, indicates that in all species only one carboxylate is strongly bound whereas the second and third ones are probably not. The observation that Δlog K1 = log K ? log K as well as Δlog K2 = log K ? log K are practically constants with values of 0.34 ± 0.05 and 0.49 ± 0.07, respectively, for both ligands and the five metal ions studied is also in line with the proposed monodentate structures of the complexes ML?, MLH and MLH.  相似文献   

    10.
    In this work, highly chemiluminescent magnetic mesoporous carbon with yolk-shell structure was synthesized by encapsulating N-(4-aminobutyl)-N-ethylisoluminol (ABEI) and Co2+ into the magnetic mesoporous carbon composites (Co2+-ABEI-Fe3O4@ void@C). The synthetic Co2+-ABEI-Fe3O4@void@C showed a good magnetic separation property, which could remove residual ABEI molecules and Co2+ in less than 3 min under an external magnet. Moreover, the synthetic Co2+-ABEI-Fe3O4@void@C demonstrated good chemiluminescence (CL) property and good stability when interacted with alkaline H2O2 solution. The CL intensity of such Co2+-ABEI-Fe3O4@void@C was about 120 times higher than that of ABEI-Fe3O4@void@C. The Co2+-ABEIFe3O4@ void@C also exhibited good electrochemiluminescence (ECL) property in alkaline solution. The outstanding CL/ECL performance of the Co2+-ABEI-Fe3O4@void@C was attributed to the Co2+ immobilized in the Co2+-ABEI-Fe3O4@void@C, which catalyzed the decomposition of H2O2 to generate O2?? and HO?, expediting the CL/ECL reaction. The synthetic Co2+-ABEI-Fe3O4@void@C may be of great application for the development of new methodologies in bioanalysis.  相似文献   

    11.
    Thermolysis of cyano complexes. VII. On the thermal decomposition of hexacyanocobaltate(III); ligand exchange during thermolysis The thermal decomposition of hexacyanocobaltates(III) yields, as products of successive intramolecular redox reactions, first dicyan and CoII(CoIII)-complexes, then CoII[CoII]-complexes and simple CoII(CN)2, respectively, and finally CoICN and elemental Co, respectively. All the compounds of the [CoIII(NH3)6]3+ cation with the cyanometallate anions of Co, Fe, Cr, Mn, Ni, Mo yield the same DTA curve as [Co(NH3)6][Co(CN)6] does; in the case of Ni and Cr, which are capable of forming ammine complexes, simultaneous mutual ligand exchange occurs.  相似文献   

    12.
    The reaction mechanism of CO oxidation on the Co3O4 (110) and Co3O4 (111) surfaces is investigated by means of spin‐polarized density functional theory (DFT) within the GGA+U framework. Adsorption situation and complete reaction cycles for CO oxidation are clarified. The results indicate that 1) the U value can affect the calculated energetic result significantly, not only the absolute adsorption energy but also the trend in adsorption energy; 2) CO can directly react with surface lattice oxygen atoms (O2f/O3f) to form CO2 via the Mars–van Krevelen reaction mechanism on both (110)‐B and (111)‐B; 3) pre‐adsorbed molecular O2 can enhance CO oxidation through the channel in which it directly reacts with molecular CO to form CO2 [O2(a)+CO(g)→CO2(g)+O(a)] on (110)‐A/(111)‐A; 4) CO oxidation is a structure‐sensitive reaction, and the activation energy of CO oxidation follows the order of Co3O4 (111)‐A(0.78 eV)>Co3O4 (111)‐B (0.68 eV)>Co3O4 (110)‐A (0.51 eV)>Co3O4 (110)‐B (0.41 eV), that is, the (110) surface shows higher reactivity for CO oxidation than the (111) surface; 5) in addition to the O2f, it was also found that Co3+ is more active than Co2+, so both O2f and Co3+ control the catalytic activity of CO oxidation on Co3O4, as opposed to a previous DFT study which concluded that either Co3+ or O2f is the active site.  相似文献   

    13.
    YBaCo4O7 compound is capable to intake and release a large amount of oxygen in the temperature range of 200–400°C. In the present study, the effect of Zn, Ga and Fe substitution for Co on the oxygen adsorption/desorption properties of YBaCo4O7 were investigated by thermogravimetry (TG) method. Due to fixed oxidation state of Zn2+ ions, the substitution of Zn2+ for Co2+ suppresses the oxygen adsorption of YBaCo4−xZnxO7. The substitution of Ga3+ for Co3+ also decreases the oxygen absorption capacity of YBaCo4−xGaxO7. This can be explained by the strong affinity of Ga3+ ions towards the GaO4 tetrahedron. Compared with Zn- and Ga-substituted samples, the drop of oxygen adsorption capacity is smallest for Fe-substituted samples because of the similar changeability of oxidation states of Co and Fe ions.  相似文献   

    14.
    Electrolysis of suspensions of Co3O4 particles in Pb2+-containing electrolytes has been used for depositing PbO2 + Co3O4 composite layers on Ni rotating dise anodes. A sufficiently high angular speed of the electrode is necessary to obtain layers of homogeneous thickness and Co3O4 concentration. The volume fraction of Co3O4 particles in the deposit α reaches a limiting value of ca. 0.1 when the volume fraction of particles in suspension C exceeds 0.008. The current density j has little effect on α as long as it is in the range 1 to 20 mA cm−2; if j increases further, α decreases.PbO2 + Co3O4 composite layers have been studied as electrode materials for the oxygen evolution reaction (mainly in NaOH solution). The overpotential and Tafel slope decrease upon increasing α. At a fixed potential, j is roughly proportional to OH concentration. The PbO2 + Co3O4 electrode performance is fairly stable at 25°C but declines with time at higher temperature.  相似文献   

    15.
    About Ba6La2Co4O15 Ba6La2Co4O15 were prepared and investigated by X-ray single crystal work. It crystallizes with hexagonal symmetry, space group C–P63mc; a = 11.8082; c = 7.0019 Å; Z = 2. Ba2+ show face connected BaO6-octahedra and larger polyhedra of C.N. = 10 and 12. Co3+ is surrounded by four and six (tetrahedra, octahedra) oxygen. The Ba2+ and La3+ ions occupy one point position statistically.  相似文献   

    16.
    The kinetics and thermodynamics of O2 addition to CoII complexes containing the simple triamine ligand (L) diethylenetriamine (=N‐(2‐aminoethyl)ethane‐1,2‐diamine; dien) or N,N″‐dimethyldiethylenetriamine (=N‐methyl‐N′‐[2‐(methylamino)ethyl]ethane‐1,2‐diamine; dmdien) in the aprotic solvent dimethyl sulfoxide (DMSO) were studied by UV/VIS spectrophotometry, potentiometry, and O2 absorption measurements. A parallel investigation on the anaerobic formation of CoII complexes with dmdien, as well as on their reactivity towards O2, was carried out in aqueous 0.1M NaClO4 solution. [CoL]2+ and [CoL2]2+ were the common species formed under anaerobic conditions in both aqueous and DMSO solutions. Under aerobic conditions, O2 adducts of different stoichiometry were formed: a superoxo complex [CoL2O2]2+ in DMSO and dimeric species in H2O. The role of the reaction medium as well as effects of N‐alkylation of the triamine ligand in the formation and reactivity of the [CoII(triamine)] complexes are discussed.  相似文献   

    17.
    The quest for new oxides with cations containing active lone‐pair electrons (E) covers a broad field of targeted specificities owing to asymmetric electronic distribution and their particular band structure. Herein, we show that the novel compound BaCoAs2O5, with lone‐pair As3+ ions, is built from rare square‐planar Co2+O4 involved in direct bonding between As3+E and Co2+ dz2 orbitals (Co? As=2.51 Å). By means of DFT and Hückel calculations, we show that this σ‐type overlapping is stabilized by a two‐orbital three‐electron interaction allowed by the high‐spin character of the Co2+ ions. The negligible experimental spin‐orbit coupling is expected from the resulting molecular orbital scheme in O3AsE–CoO4 clusters.  相似文献   

    18.
    Structural and Bonding Properties of Quadridentate and Bidentate Cobalt(II) and Copper(II) Schiff Base Complexes and Oxygenation Behavior of the CoII Complexes. An ESR Study ESR investigations on the low-spin cobalt(II) chelates bis(benzoylacetaldehyde)-ethylendiimine-cobalt(II), bis(benzoylacetaldehyde)-1,2-cyclohexandiimine-cobalt(II) and bis(p-chlor-β-mercaptozimtaldanilato)-cobalt(II) as well as the corresponding copper(II) chelates are reported. The large anisotropy of the g tensor of the CoII chelates caused by strong spin-orbit interactions, and the position of the maximum g tensor component gx in the molecules obtained by comparison with the ESR spectra of the CuII complexes predicts a MO for the unpaired electron which consists mainly of the Co dyz obital. In solution (CHCl3/pyridine) the CoII chelates react immediately with molecular oxygen forming [CoLn(O2)(py)] species characterized by ESR spectra with strongly reduced g tensor anisotropy and small 59Co hyperfine coupling constants. The unpaired electron appears to be mainly localized in the O2-part of hte molecules. The CoN2S2 coordination sphere shows a lower affinity to oxygen than the CoN2O2 type complexes. In the CuN2O2 complexes the unpaired electron is found to be in a MO containing the Cu dxy orbital. Due to remarkable covalency14 N and H hyperfine interactions are observed in the ESR spectra. Analyzing the hyperfine coupling constants the extent of unpaired spin density on the N donor atoms and the N-2s/2p hybridization degree is estimated.  相似文献   

    19.
    In this paper, in situ growth of Co3O4 nano-dodecahedra on In2O3 hexagonal prisms were synthesized via pyrolysis of ZIF-67/MIL-68. Interestingly, the amount of Co3O4 dodecahedra on In2O3 hexagonal prisms was regularly regulated and controlled. In detail, four Co3O4/In2O3 catalysts with various Co/In molar ratio were prepared, including Co4In1 (Co/In molar ratio was 4:1), Co2In1 (Co/In molar ratio was 2:1), Co1In1 (Co/In molar ratio was 1:1), Co0.5In1 (Co/In molar ratio was 0.5:1). The catalytic performance of Co3O4/In2O3 catalysts was systematically investigated for toluene combustion. It could be noted that the Co2In1 sample exhibited the superior catalytic performance, and the temperatures for 90% toluene conversion (T90) was 182 °C. Furthermore, the toluene conversion of Co2In1 sample had no significant decrease at 178 °C for 15 h, indicating that it presented superior stability for toluene oxidation reaction. Through various characterizations, it was verified that the Co/In molar ratio of Co3O4/In2O3 catalyst could obviously alter the surface atomic ratio of Co3+/(Co3+ + Co2+), BET surface area, the number of surface adsorbed oxygen, the interaction between In2O3 and Co3O4 of CoInOx catalysts and so on. The lots of surface adsorbed oxygen, strong interaction between In2O3 and Co3O4 would promote the catalytic oxidation of toluene. Especially, we discovered that the catalytic activity of Co3O4/In2O3 was obviously improved with the increase of Co3+/(Co3+ + Co2+) surface atomic ratio.  相似文献   

    20.
    The development of efficient catalyst for selective oxidation of hydrocarbon to functional compounds remains a challenge. Herein, mesoporous Co3O4 (mCo3O4-350) showed excellent catalytic activity for selective oxidation of aromatic-alkanes, especially for oxidation of ethylbenzene with a conversion of 42 % and selectivity of 90 % for acetophenone at 120 °C. Notably, mCo3O4 presented a unique catalytic path of direct oxidation of aromatic-alkanes to aromatic ketones rather than the conventional stepwise oxidation to alcohols and then to ketones. Density functional theory calculations revealed that oxygen vacancies in mCo3O4 activate around Co atoms, causing electronic state change from Co3+(Oh)→Co2+(Oh). Co2+(Oh) has great attraction to ethylbenzene, and weak interaction with O2, which provide insufficient O2 for gradual oxidation of phenylethanol to acetophenone. Combined with high energy barrier for forming phenylethanol, the direct oxidation path from ethylbenzene to acetophenone is kinetically favorable on mCo3O4, sharply contrasted to non-selective oxidation of ethylbenzene on commercial Co3O4.  相似文献   

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