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751.
Gómez Castaño JA Picone AL Romano RM Willner H Della Védova CO 《Chemistry (Weinheim an der Bergstrasse, Germany)》2007,13(33):9355-9361
The photochemically induced reaction of OCSe and F(2), isolated together in an Ar matrix at about 15 K, leads to formation of the hitherto-unknown fluorocarbonylselenyl fluoride FC(O)SeF. The reaction occurs via a van der Waals complex O=C=Se...F-F that favors very early formation of the anti conformer. The presence and subsequent decay of a band assigned to the F-F vibration correlated with perturbed OCSe bands seems to confirm this hypothesis. Subsequent irradiation of the matrix leads to randomized FC(O)SeF by a photochemically induced conformational equilibrium between syn and anti forms. Another photochemical reaction channel is the formation of CO and SeF(2) molecules, which are produced in the same matrix cage and then form a loose complex. The changes were monitored and the products characterized experimentally by their IR spectra, and the spectra analyzed in the light of the results of theoretical calculations. 相似文献
752.
The volumetric reconstruction technique presented in this paper employs a two-camera stereoscopic particle image velocimetry
(SPIV) system in order to reconstruct the mean flow behind a fixed cylinder fitted with helical strakes, which are commonly
used to suppress vortex-induced vibrations (VIV). The technique is based on the measurement of velocity fields at equivalent
adjacent planes that results in pseudo volumetric fields. The main advantage over proper volumetric techniques is the avoidance
of additional equipment and complexity. The averaged velocity fields behind the straked cylinders and the geometrical periodicity
of the three-start configuration are used to further simplify the reconstruction process. Two straked cylindrical models with
the same pitch (p = 10d) and two different heights (h = 0.1 and 0.2d) are tested. The reconstructed flow shows that the strakes introduce in the wake flow a well-defined wavelength of one-third
of the pitch. Measurements of hydrodynamic forces, fluctuating velocity, vortex formation length, and vortex shedding frequency
show the interdependence of the wake parameters. The vortex formation length is increased by the strakes, which is an important
effect for the suppression of vortex-induced vibrations. The results presented complement previous investigations concerning
the effectiveness of strakes as VIV suppressors and provide a basis of comparison to numerical simulations. 相似文献
753.
We investigate the competition between glass formation and crystallization of open tetrahedral structures for particles with tetrahedral patchy interactions. We analyze the outcome of such competition as a function of the potential parameters. Specifically, we focus on the separate roles played by the interaction range and the angular width of the patches, and show that open crystal structures (cubic and hexagonal diamond and their stacking hybrids) spontaneously form when the angular width is smaller than about 30°. Evaluating the temperature and density dependence of the chemical potential of the fluid and of the crystal phases, we find that adjusting the patch width affects the fluid and crystal in different ways. As a result of the different scaling, the driving force for spontaneous self-assembly rapidly grows as the fluid is undercooled for small-width patches, while it only grows slowly for large-width patches, in which case crystallization is pre-empted by dynamic arrest into a network glass. 相似文献
754.
Metal-free intermolecular oxidative C-N bond formation via tandem C-H and N-H bond functionalization
Kantak AA Potavathri S Barham RA Romano KM DeBoef B 《Journal of the American Chemical Society》2011,133(49):19960-19965
The development of a novel intermolecular oxidative amination reaction, a synthetic transformation that involves the simultaneous functionalization of both a N-H and C-H bond, is described. The process, which is mediated by an I(III) oxidant and contains no metal catalysts, provides a rapid and green method for synthesizing protected anilines from simple arenes and phthalimide. Mechanistic investigations indicate that the reaction proceeds via nucleophilic attack of the phthalimide on an aromatic radical cation, as opposed to the electrophilic aromatic amination that has been reported for other I(III) amination reactions. The application of this new reaction to the synthesis of a variety of substituted aniline derivatives is demonstrated. 相似文献
755.
F. Rizzo G.P. Cirrone G. Cuttone A. Esposito S. Garraffo G. Pappalardo L. Pappalardo F.P. Romano S. Russo 《Microchemical Journal》2011,97(2):286-290
In the last years a non-destructive protocol of analysis, based on the combined use of the portable PIXE-alpha (particles induced X-ray emission), the XRF (X-ray florescence) spectrometers and of the new DPAA (deep protons activation analysis) method, was developed at the LANDIS laboratory of the INFN-LNS and IBAM-CNR, in order to characterise late Roman nummi dating from 294 onwards. The main aim of the investigation was the determination of the silver content of the coins produced in different periods of time and the study of the technique used for their manufacturing.The present paper discusses the results obtained from the analysis of 15 coins dated back to 308–311 A.D. produced at Carthago during the domination of the usurper L. Domitius Alexander. The obtained analytical data allowed to make some considerations about the minting of silvered bronze coins during this historical period. 相似文献
756.
Ramos LA Ulic SE Romano RM Tong S Ge M Vishnevskiy YV Berger RJ Mitzel NW Beckers H Willner H Della Védova CO 《Inorganic chemistry》2011,50(19):9650-9659
The novel molecule difluorochloroacetyl cyanide, ClF(2)CC(O)CN, has been characterized by IR (gas phase, Ar matrix), Raman (liquid), (19)F and (13)C NMR, and photoelectron (PES) spectroscopies; photoionization mass spectrometry (PIMS); and gas electron diffraction (GED). The conformational properties of ClF(2)CC(O)CN have been studied by joint application of vibrational spectroscopy, GED, and quantum chemical calculations. The existence of two conformers is detected in the gas and liquid phases, in which the C-Cl bond adopts gauche and syn orientations with respect to the C═O group. The computed enthalpy difference is in harmony with the experimental results of the gauche being more stable than the syn conformer by ΔH° = 1.3 kcal mol(-1) (MP2/cc-pVTZ). The valence electronic properties and the possible ionization and dissociation processes of the title compound are studied using the PES and PIMS. The experimental first vertical ionization energy of 12.0 eV corresponds to the ejection of an electron of the oxygen lone pairs. Taking into account the properties and broad applications of acyl cyanides, ClF(2)CC(O)CN is a promising new precursor in preparative chemistry. 相似文献
757.
Annamaria Mazzia Gianmarco Manzini Mario Putti 《Journal of computational physics》2011,230(23):8410-8426
We study the performance of Godunov mixed methods, which combine a mixed-hybrid finite element solver and a Godunov-like shock-capturing solver, for the numerical treatment of the advection–dispersion equation with strong anisotropic tensor coefficients. It turns out that a mesh locking phenomenon may cause ill-conditioning and reduce the accuracy of the numerical approximation especially on coarse meshes. This problem may be partially alleviated by substituting the mixed-hybrid finite element solver used in the discretization of the dispersive (diffusive) term with a linear Galerkin finite element solver, which does not display such a strong ill conditioning. To illustrate the different mechanisms that come into play, we investigate the spectral properties of such numerical discretizations when applied to a strongly anisotropic diffusive term on a small regular mesh. A thorough comparison of the stiffness matrix eigenvalues reveals that the accuracy loss of the Godunov mixed method is a structural feature of the mixed-hybrid method. In fact, the varied response of the two methods is due to the different way the smallest and largest eigenvalues of the dispersion (diffusion) tensor influence the diagonal and off-diagonal terms of the final stiffness matrix. One and two dimensional test cases support our findings. 相似文献
758.
Sergei M. Pimenov Igor I. Vlasov Andrey A. Khomich Beat Neuenschwander Martin Muralt Valerio Romano 《Applied Physics A: Materials Science & Processing》2011,105(3):673-677
Arrays of through laser-graphitized microstructures have been fabricated in type IIa single-crystal 1.2-mm-thick diamond plates
by multipulse laser irradiation with 10-ps pulses at λ=532 nm wavelength. Raman and photoluminescence (PL) spectroscopy studies of the bulk microstructures have evidenced the diamond
transformation to amorphous carbon and graphitic phases and the formation of radiation defects pronounced in the PL spectra
as the self-interstitial related center, the 3H center, at 504 nm. It is found that the ultrafast-laser-induced structural
modifications in the bulk of single-crystal diamond plates occur along {111} planes, known as the planes of the lowest cleavage
energy and strength in diamond. 相似文献
759.
Tjøstil Vlaar Dr. Eelco Ruijter Prof. Dr. Bert U. W. Maes Prof. Dr. Romano V. A. Orru 《Angewandte Chemie (International ed. in English)》2013,52(28):7084-7097
Isocyanides have been important building blocks in organic synthesis since the discovery of the Ugi reaction and related isocyanide‐based multicomponent reactions. In the past decade isocyanides have found a new application as versatile C1 building blocks in palladium catalysis. Palladium‐catalyzed reactions involving isocyanide insertion offer a vast potential for the synthesis of nitrogen‐containing fine chemicals. This Minireview discusses all the achievements in this emerging field. 相似文献
760.
Sergei M. Pimenov Beat Neuenschwander Beat Jäggi Valerio Romano 《Applied Physics A: Materials Science & Processing》2014,114(4):1309-1319
In the paper we report on picosecond-laser bulk microstructuring and stimulated Raman scattering (SRS) in type IIa single-crystal diamond in the course of multipulse irradiation at λ=532 nm wavelength using an advanced ps-laser system equipped with additional setups for on-line video imaging and photoluminescence spectra measurements. The effect of crystal orientation (relative to the incident laser beam) on (i) optical breakdown thresholds, (ii) character of bulk modifications, and (iii) generation of stimulated Raman scattering in diamond during irradiation with picosecond pulses of different durations (τ 1=10 ps and τ 2=44 ps) is studied. It is shown that the processes of laser-induced breakdown in the bulk of diamond (at the backside of the crystals) and bulk microstructure growth are governed by the dielectric breakdown mechanism. It is found that generation of high-order stimulated Raman scattering in diamond crystals has a considerable effect on the threshold of laser-induced breakdown and bulk microstructuring. Conditions of the efficient SRS lasing are determined, depending on the pulse duration and the direction ([100] and [110]) of the laser beam incidence. A method of local temperature measurements in the bulk of diamond based on the Stokes-to-anti-Stokes intensity ratio in the recorded SRS spectra is proposed, its applicability to determine a “pre-breakdown” temperature of diamond during multipulse ps-laser irradiation is discussed. 相似文献