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51.
Novel 1,3‐dialkylimidazolidinium, 1,3‐dialkyl‐3,4,5,6‐tetrahydropyrimidinium, and 1,3‐dialkyl‐1H‐4,5,6,7‐tetrahydrodiazepinium hexafluorophosphates ( 1a–c, 2a–c ) as N‐heterocyclic carbene precursors have been synthesized and characterized. The incorporation of saturated N‐heterocyclic carbenes into palladium precatalysts gives high‐catalyst activity in the Heck coupling of aryl bromide substrates in aqueous media. The complexes were generated in the presence of Pd(OAc)2 by in situ deprotonation of 1,3‐dialkylazolinium salts 1, 2 . © 2008 Wiley Periodicals, Inc. Heteroatom Chem 19:82–86, 2008; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/hc.20415 相似文献
52.
J.-M. Manceau A. Nevin C. Fotakis S. Tzortzakis 《Applied physics. B, Lasers and optics》2008,90(3-4):365-368
A powerful broadband femtosecond laser-driven terahertz source was built and used to analyze cultural heritage and art-related
materials in the terahertz region of the electromagnetic spectrum. The high signal-to-noise ratio available in our system
revealed details in the absorption spectra which are inaccessible with traditional FTIR spectrometers. Clear spectral signatures
were recorded from organic binding media thus demonstrating the potential of the approach for applications in the monitoring
and analysis of cultural heritage materials.
PACS 42.65.Tg; 87.50.U-; 87.64.K- 相似文献
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54.
Yelda Bingöl Alpaslan Nevin Süleymanoğlu Emin Öztekin Ferda Erşahin Erbil Ağar Şamil Işık 《Journal of chemical crystallography》2010,40(11):950-956
Abstract
The molecular and crystal structure of the title compound, C14H11Cl2NO, has been determined by X-ray single crystal diffraction technique. The compound crystallizes in the orthorhombic, space group Pbca with unit cell dimensions a = 7.5537(10) ?, b = 11.5518(13) ?, c = 29.760(4) ?, M r = 280.14, V = 2596.8(6) ?3, Z = 8, R 1 = 0.065 and wR 2 = 0.191. The title compound exists in the enol–imine tautomeric form with a strong intramolecular O–H···N hydrogen bond. The dihedral angle between the two benzene rings is 37.66(15)°. The asymmetric unit in the crystal structure contains only one neutral molecule. Calculational studies were performed by using AM1, PM3, PM6 semi-empirical and DFT methods. Geometry optimizations of compound have been carried out by using three semi-empirical methods and DFT method and bond lengths, bond and torsion angles of title compound have been determined. Dipole moments (Debye) and the energy parameters of compound (kcal/mol) were calculated by using above mentioned calculation methods. Atomic charge distribution has been obtained from AM1, PM3, PM6 and DFT. In order to determine conformational flexibility on the molecule, molecular energy profile of the title compound was obtained with respect to the selected torsion angle T(N1–C7–C1–C2), which is varied from −180° to +180° in every 10 via PM3 semi-empirical method. 相似文献55.
Nevin A Comelli D Valentini G Anglos D Burnstock A Cather S Cubeddu R 《Analytical and bioanalytical chemistry》2007,388(8):1897-1905
The differentiation of proteins commonly found as binding media in paintings is presented based on spectrally resolved and
time-resolved laser-induced fluorescence (LIF) and total emission spectroscopy. Proteins from eggs and animal glue were analysed
with pulsed laser excitation at 248 nm (KrF excimer) and 355 nm (third harmonic of Nd:YAG) for spectrally resolved measurements,
and at 337 nm (N2) and 405 nm (N2 pumped dye laser) for spectrally resolved lifetime measurements and fluorescence lifetime imaging (FLIM). Total emission
spectra of binding media are used for the interpretation of LIF spectra. Time-resolved techniques become decisive with excitation
at longer wavelengths as fluorescence lifetime permits the discrimination amongst binding media, despite minimal spectral
differences; spectrally resolved measurements of fluorescence lifetime have maximum differences between the binding media
examined using excitation at 337 nm, with maximum observed fluorescence at 410 nm. FLIM, which measures the average lifetime
of the emissions detected, can also differentiate between media, is non-invasive and is potentially advantageous for the analysis
of paintings.
Figure The fluorescence of solid ox glue extracted from collagen can be visualised in this Total Fluorescence Spectrum; three different
peaks from multiple fluorophores are present and allow the discrimination between collagen- and non-collagen proteinaceous
binding media found in paintings 相似文献
56.
Emine Özge Karaca Nevin Gürbüz Onur Şahin Orhan Büyükgüngör İsmail Özdemir 《应用有机金属化学》2016,30(12):1050-1055
N‐Aryl amination and the Buchwald–Hartwig reaction are of great synthetic and industrial interest and scientists accept their usefulness and versatility for obtaining arylamines. In this study Ag–N‐heterocyclic carbene complexes were used as transmetallation reagents for the synthesis of Pd–N‐heterocyclic carbene complexes. The new Pd–N‐heterocyclic carbene complexes were characterized using elemental analysis and 1H NMR, 13C NMR and infrared spectroscopies. The crystal structure of one, namely dichlorobis[1,3‐bis(2‐methylbenzyl)imidazolidin‐2‐yliden]palladium(II), is presented. The activity of the Pd(II) complexes in the coupling reaction of anilines or amines with bromobenzene was investigated. These complexes exhibited high catalytic activities in the direct synthesis of triarylamines and secondary amines in a single step. Copyright © 2016 John Wiley & Sons, Ltd. 相似文献
57.
Turan Nevin Buldurun Kenan Alan Yusuf Savci Ahmet Çolak Naki Mantarcı Asim 《Research on Chemical Intermediates》2019,45(6):3525-3540
Research on Chemical Intermediates - In this study, the complex combinations of Ru(II), Co(II) and Ni(II) with Schiff base obtained through the condensation of (E)-methyl... 相似文献
58.
Karaböcek Serdar Değirmencioğlu İsmail Karaböcek Nevin Serbest Kerim 《Transition Metal Chemistry》2003,28(5):529-533
1,9-Dioxa-3,6-dithiacyclotridecane-10,12-dione (L1), and 1,4-dioxa-7,10-dithiacyclododecane-2,3-dione, (L2), two novel ligands, and their mono- and di-nuclear copper(II) and/or nickel(II) complexes have been prepared and characterized by elemental analyses, 1H- and 13C-n.m.r., i.r., magnetic moments and mass spectral studies. Elemental analyses, stochiometric and spectroscopic data on the complexes indicate that the metal ions are coordinated to the nitrogen, oxygen and sulphur atoms and the data support the proposed structure for the diones and their mono–dinuclear copper(II) complexes. Moreover, copper(II) complexes of the dione ligands have a 1:1 metal:ligand ratio. 相似文献
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