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1.
In a previous study (Stahl and Bredow, Chem. Phys. Lett. 2018, 695, 28–33), we have studied structural, energetic, and electronic properties of two vanadium dioxide VO2 polymorphs with modified global and range-separated hybrid functionals. Since hybrid methods are computationally demanding, we evaluate the computationally more efficient DFT + U method in the present study. We assessed the widely used Dudarev PBE + U approach with a literature value of the effective Hubbard parameter Ueff = 3.4 eV. We compared the PBE + U results for the two VO2 polymorphs with our previous results, a self-consistent hybrid functional sc-PBE0, and the meta-GGA functional SCAN. It was found that the PBE + U method yields a strongly distorted monoclinic phase and does not reproduce the metal-to-insulator transition of VO2 correctly, even with modified values of Ueff. On the other hand, sc-PBE0 and SCAN describe the relative stability and the electronic structure of both polymorphs correctly and also provide reasonable lattice parameters. The functional SCAN yields the optimal balance between computational efficiency and accuracy. © 2019 The Authors. Journal of Computational Chemistry published by Wiley Periodicals, Inc.  相似文献   

2.
In the selected regions La:(La + U) = 0.05 and O:(La + U) = 2.00 of the ternary system lanthanum-uranium-oxygen emf measurements on solid state galvanic cells, coulometric titrations, and X-ray diffraction techniques were used to obtain phase boundaries and thermodynamic data in the temperature range from 600 to 1000°C. For the first time order disorder transformations of La1−yUyO2+x up to 15 mole% lanthanum are reported. The transformation temperature is 1415°K for UO2.23; 1397°K for La0.05U0.95O2.23, and 1449°K for La0.15U0.85O2.23. The vibrational entropy component of excess oxygen in M1−yUyO2+x is estimated.  相似文献   

3.
The ground‐state 4f fine‐structure levels in the intrinsic optical transition gaps between the 2p and 5d orbitals of lanthanide sesquioxides (Ln2O3, Ln = La…Lu) were calculated by a two‐way crossover search for the U parameters for DFT + U calculations. The original 4f‐shell potential perturbation in the linear response method were reformulated within the constraint volume of the given solids. The band structures were also calculated. This method yields nearly constant optical transition gaps between Ln‐5d and O‐2p orbitals, with magnitudes of 5.3 to 5.5 eV. This result verifies that the error in the band structure calculations for Ln2O3 is dominated by the inaccuracies in the predicted 4f levels in the 2p‐5d transition gaps, which strongly and non‐linearly depend on the on‐site Hubbard U. The relationship between the 4f occupancies and Hubbard U is non‐monotonic and is entirely different from that for materials with 3d or 4d orbitals, such as transition metal oxides. This new linear response DFT + U method can provide a simpler understanding of the electronic structure of Ln2O3 and enables a quick examination of the electronic structures of lanthanide solids before hybrid functional or GW calculations. © 2015 Wiley Periodicals, Inc.  相似文献   

4.
我们将N-乙酰-L-半胱氨酸(NALC)修饰于ZnFe2O4@SiO2纳米材料表面,制备了一种新型的手性纳米复合物(ZnFe2O4@SiO2-NALC),该材料能够简便、快速及高选择性地识别手性酪氨酸(Tyr)对映体。利用X射线粉末衍射(XRD)、红外光谱(FT-IR)、能量色散X射线光谱(EDS)、扫描电子显微镜(SEM)、高分辨率透射电子显微镜(HRTEM)和振动样品磁力计(VSM)等一系列表征手段对首次合成出的ZnFe2O4@SiO2-NALC进行测试表征,并将其应用于对手性识别领域的探究。实验结果表明,利用光谱技术(紫外-可见光谱和荧光光谱),ZnFe2O4@SiO2-NALC可对Tyr对映异构体进行手性识别。此外,我们进一步对Tyr浓度和pH值等实验参数进行了优化。  相似文献   

5.
In this paper, ZnFe2O4, a visible light active photocatalyst, was comodified by graphene oxide (GO) and Ag nanoparticles (NPs) to form ZnFe2O4–Ag/rGO nanocomposite (NC) by facile one‐pot hydrothermal method. Reduction of GO and formation of ZnFe2O4 and Ag nanoparticles occurred simultaneously during hydrothermal reaction. The photocatalytic activity of the NC was investigated under visible light, for the degradation of 17α‐ethinylestradiol (EE2), a nondye compound, which also is an emerging pollutant with endocrine‐disrupting activity. The pseudo rate constant (k′) of as‐synthesized ZnFe2O4–Ag/rGO NC was higher by the factor of 14.6 and 5.6 times than the corresponding ZnFe2O4 and ZnFe2O4/rGO respectively. The synergistic interactions between ZnFe2O4, Ag and rGO leading to decreased aggregation of the NPs, increased surface area, better absorption in visible region, effective electron–hole generation transfer. However, in the presence of humic acid (HA), the photosensitization effect was predominated by competitive interaction resulting in only 80% removal of EE2 within the same time. Moreover, the composite can easily be magnetically separated for reuse.  相似文献   

6.
A number of most representative second order polarization propagator approach (SOPPA) based wavefunction methods, SOPPA, SOPPA(CC2) and SOPPA(CCSD), and density functional theory (DFT) based methods, B3LYP, PBE0, KT2, and KT3, have been benchmarked in the calculation of the one‐bond 29Si‐1H spin‐spin coupling constants in the series of halosilanes SiHnX4?n (X = F, Cl, Br, I), both at the non‐relativistic and full four‐parameter Dirac's relativistic levels taking into account vibrational corrections. At the non‐relativistic level, the wavefunction methods showed much better results as compared with those of DFT. At the DFT level, out of four tested functionals, the Perdew, Burke, and Ernzerhof's PBE0 showed best performance. Taking into account, relativistic effects and vibrational corrections noticeably improves wavefunction methods results, but generally worsens DFT results. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

7.
Monodisperse and porous nonstoichiometric Zn ferrite can be prepared by a solvothermal method. Such non-Zn ferrite was used to be the precursor for synthesis of ZnFe2O4/Fe2O3 composite via calcination at 600°C for 3 h in air. X-ray powder diffractometer (XRD) and Energy Dispersive Spectrometer (EDS) proved the nonstoichiometry of Zn ferrite synthesized by solvothermal method and the formation of ZnFe2O4/Fe2O3 composite via calcination. TEM image showed that non-Zn ferrite spheres with wormlike nanopore structure were made of primary nanocrystals. BET surface area of non-Zn ferrite was much higher than that of ZnFe2O4/Fe2O3 composite. Saturation magnetization of non-Zn ferrites was significantly higher than that of ZnFe2O4/Fe2O3 composites. Calcination of non-Zn ferrite resulted in the formation of large amount of non-magnetic Fe2O3,which caused a low magnetization of composite. Because of higher BET surface area and higher saturation magnetization, non-Zn ferrite presented better Cr6+ adsorption property than ZnFe2O4/Fe2O3 composites.  相似文献   

8.
The electronic energy structure and FeK XANES in monoferrites MgFe2O4, MnFe2O4, NiFe2O4, and ZnFe2O4 were calculated with the FEFF8 program. In both normal (MnFe2O4, ZnFe2O4) and invert (MgFe2O4, NiFe2O4) spinels, hybridization of the p-states of oxygen with the 3d-states of transition metal ions leads to a similarity in the formation of the top of the valence band. In contrast to the magnetic nickel and manganese ions, the nonmagnetic zinc and magnesium ions are not actively involved in chemical bonding. It is shown that when Mn and Fe lie in the same coordination spheres of the absorbing iron atom the 3d-states are split and the curve of the densities of the p-states of transition element ions with different spin orientations changes in shape.  相似文献   

9.
New soluble MoS2 nanosheets covalently functionalized with poly(N‐vinylcarbazole) (MoS2–PVK) were in situ synthesized for the first time. In contrast to MoS2 and MoS2/PVK blends, both the solution of MoS2–PVK in DMF and MoS2–PVK/poly(methyl methacrylate) (PMMA) film show superior nonlinear optical and optical limiting responses. The MoS2–PVK/PMMA film shows the largest nonlinear coefficients (βeff) of about 917 cm GW?1 at λ=532 nm (cf. 100.69 cm GW?1 for MoS2/PMMA and 125.12 cm GW?1 for MoS2/PVK/PMMA) and about 461 cm GW?1 at λ=1064 nm (cf. ?48.92 cm GW?1 for MoS2/PMMA and 147.56 cm GW?1 for MoS2/PVK/PMMA). A larger optical limiting effect, with thresholds of about 0.3 GW cm?2 at λ=532 nm and about 0.5 GW cm?2 at λ=1064 nm, was also achieved from the MoS2–PVK/PMMA film. These values are among the highest reported for MoS2‐based nonlinear optical materials. These results show that covalent functionalization of MoS2 with polymers is an effective way to improve nonlinear optical responses for efficient optical limiting devices.  相似文献   

10.
Heterostructured ZnFe2O4–graphene nanocomposites are synthesized by a facile hydrothermal method. The as-prepared ZnFe2O4–graphene nanocomposites are characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), Brunauer–Emmett–Teller (BET) analysis and galvanostatic charge and discharge measurements. Compared with the pure ZnFe2O4 nanoparticles, the ZnFe2O4–graphene nanocomposites exhibit much larger reversible capacity up to 980 mAh g−1, greatly improved cycling stability, and excellent rate capability. The superior electrochemical performance of the ZnFe2O4–graphene nanocomposites could be attributed to the synergetic effect between the conducting graphene nanosheets and the ZnFe2O4 nanoparticles.  相似文献   

11.
In the present work, a visible-light-driven Ag/AgBr/ZnFe2O4 photocatalyst has been successfully synthesized via a deposition–precipitation and photoreduction method. The crystal structure, chemical composition, morphology and optical properties of the as-prepared nanocomposites were characterized by X-ray diffraction spectroscopy, X-ray photoelectron spectroscopy, scanning electron microscopy, high-resolution transmission electron microscopy, energy-dispersive X-ray spectroscope, UV–vis diffuse reflectance spectroscopy and photoluminescence. The photocatalytic activities of the Ag/AgBr/ZnFe2O4 nanocomposites were evaluated through the photodegradation of gaseous toluene and methyl orange (MO) under visible light. The results revealed that the as-prepared Ag/AgBr/ZnFe2O4 nanocomposite exhibited excellent photocatalytic activity. The degrading efficiency of MO could still reach 90% after four cycles, and the Ag/AgBr/ZnFe2O4 nanocomposite could be recycled easily by a magnet. Additionally, the enhanced photocatalytic mechanism was discussed according to the trapping experiments, which indicated that the photo-generated holes (h+) and •O2 played important roles in photodegradation process. At last, a possible photocatalytic oxidation pathways of toluene was proposed based on the results of GC–MS. The Ag/AgBr/ZnFe2O4 composites showed potential application for efficient removal of organic pollutant.  相似文献   

12.

Zinc ferrite (ZnFe2O4) nanoparticles were successfully synthesized from Zn(NO3)2 · 6H2O and Fe(NO3)3 · 9H2O by microwave hydrothermal method at 150°C for 1 h. Cubic ZnFe2O4 with particle size below 7 nm was formed in the solution at pH ≥ 6. The crystallinity and particle size of ZnFe2O4 nanoparticles were increased after calcination. The effects of pH of the precursor solution and calcination on the particle size and crystallinity of the particles were studied. At room temperature the products show superparamagnetic and ferromagnetic properties, determined by their size. The formation mechanism of ZnFe2O4 was also discussed according to the experimental results.

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13.
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15.
A magnetic TiO2/ZnFe2O4 photocatalyst was prepared by a sol-gel method, and X-ray diffraction (XRD), magnetic and photocatalytic properties analysis were employed to characterize this photocatalyst. The XRD results show that ZnFe2O4 can prevent the transformation of titania from anatase to rutile. The magnetic properties analysis indicates that TiO2/ZnFe2O4 is of large saturation magnetization value and low coercivity. The photocatalytic experimental results show that TiO2/ZnFe2O4=3 and 4 are superior in photocatalytic reactivity to other proportions. TEM shows that TiO2/ZnFe2O4 has a fine core-shell fabric. After being used for four times during the photocatalytic reaction, the TiO2/ZnFe2O4 nanoparticles have good photocatalytic stability.  相似文献   

16.
Zinc ferrite nano-powders with a nominal composition of ZnFe2O4 were prepared by combustion synthesis using mixture of urea and ammonium nitrate as fuel. The influence of alumina-doping on the structural, morphological and magnetic properties of ZnFe2O4 nano-particles was investigated by means of X-ray powder diffraction (XRD), infrared (IR) spectroscopy, scanning and transmission electron microscopy (SEM and TEM) and vibrating sample magnetometer (VSM). XRD and IR analyses confirm the cubic spinel phase of ZnFe2O4 nano-particles. The Zn ferrite presented a uniform microstructure with grain size in nano-scale. Alumina-doping brought about a change in the morphology of the as prepared ferrite from sphere-like to regular hexagon. Al2O3-treatment led to a decrease in the coercivity (Hc), magnetization (Ms) and magnetic moment (nB) of the investigated system. The maximum decrease in the values of Hc, Ms and nB due to the treatment with 1.5 wt% Al2O3 attained 13.5, 17.4 and 13.5%, respectively. The observed results can be explained on the basis of particle size and the Fe3+ concentration in the octahedral and tetrahedral sites involved in the cubic spinel structure.  相似文献   

17.
Super paramagnetic ZnFe2O4 nanoparticles were prepared by a surfactant assisted (ethylamine) hydrothermal method along with heat treatment. The nanoparticles were characterized by X-ray diffraction, Fourier transform infrared spectroscopy, high resolution scanning electron microscopy, Transmission electron microscopy, vibrating sample magnetometer and diffuse reflectance spectra technique. From the analyses, influence of calcination temperature on the structural, vibrational, morphological, magnetic and optical properties of ZnFe2O4 nanoparticles were investigated. The ZnFe2O4 nanoparticles with an average particle size of 17 nm showed high photocatalytic activity in the degradation of methylene blue (90 %). This work demonstrates that ZnFe2O4 can be used as a potential monocomponent in visible-light photocatalysis for the degradation of organic pollutants. Furthermore, the products were super paramagnetic and could be conveniently separated within 15 min and recycled by using simple magnet, which is very beneficial for the degradation of organic pollutants.  相似文献   

18.
The photoexcitation of a triangular silver(I) hydride complex, [Ag33-H)(μ2-dcpm)3](PF6)2 ([ P ](PF6)2, dcpm=bis(dicyclohexylphosphino)methane), designed with “UV-silent” bis-phosphine ligands, provokes hydride-to-Ag3 single and double electron transfer. The nature of the electronic transitions has been authenticated by absorption and photodissociation spectroscopy in parallel with high-level quantum-chemical computations utilizing the GW method and Bethe–Salpeter equation (GW-BSE). Specific photofragments of mass-selected [ P ]2+ ions testify to charge transfer and competing pathways resulting from the unique [Ag33-H)]2+ scaffold. This structural motif of [ P ](PF6)2 has been unequivocally verified by 1H NMR spectroscopy in concert with DFT and X-ray diffraction structural analysis, which revealed short equilateral Ag–Ag distances (dAgAg=3.08 Å) within the range of argentophilic interactions. The reduced radical cation [ P ] . + exhibits strong oxophilicity, forming [ P +O2] .+ ,which is a model intermediate for silver oxidation catalysis.  相似文献   

19.
Reduced graphene oxide/Zinc ferrite (rGO/ZnFe2O4) nanohybrids are successfully decorated on the surface of the rGO sheets through a simple, one-step hydrothermal method. ZnFe2O4 nanoparticles (NPs) are homogeneously anchored on the rGO sheets. The rGO/ZnFe2O4 hybrids are characterized by XRD, FT-IR, XPS, TEM, Raman, BET. The rGO/ZnFe2O4 hybrids demonstrate amazing catalytic activity on thermal decomposition of ammonium perchlorate (AP), which is better than that of bare ZnFe2O4 NPs. TG-DTA results indicate that the ZnFe2O4 NPs in the hybrids with increasing ratio (1%, 3%, 5%) could decrease the second decomposition temperature of AP by 42.7?°C, 55.0?°C, 68.1?°C, respectively, and reduce the apparent activation energy of AP from 160.2?kJ?mol?1 to 103.8?kJ?mol?1. This enhanced catalytic performance is mainly attributed to the synergistic effect of ZnFe2O4 NPs and rGO.  相似文献   

20.
以硝酸银、钛酸四丁酯、无水氯化锌、六水氯化铁为原料,采用溶胶-凝胶法与溶剂热相结合的方法制备了ZnFe2O4/Ag/TiO2复合材料,通过扫描电子显微镜、能谱分析仪、X射线粉末衍射仪、X射线光电子能谱仪、振动样品磁强计、紫外可见分光光度计对样品进行表征及测试。结果表明: ZnFe2O4/Ag/TiO2-10具有最佳的光催化效果,在紫外和可见光下对染料的降解率都能达到90%以上,具有优异的紫外可见光光催化活性。ZnFe2O4/Ag/TiO2具有独特的磁性,能在外部磁场作用下进行回收利用,这使其在实际应用中成为可能。通过磁分离技术重复回收利用5次后仍然保持优良的光催化性能,说明ZnFe2O4/Ag/TiO2-10具有优异的磁性及较高的光催化循环稳定性。  相似文献   

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