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Cataldo L Dutan C Misra SK Loss S Grützmacher H Geoffroy M 《Chemistry (Weinheim an der Bergstrasse, Germany)》2005,11(11):3463-3468
The EPR spectrum of the novel radical Mes*(CH3)P--PMes* (Mes*=2,4,6-(tBu)3C6H2) was measured in the temperature range 100-300 K, and was found to be drastically temperature dependent as a result of the large anisotropy of the 31P hyperfine tensors. Below 180 K, a spectrum of the liquid solution is accurately simulated by calculating the spectral modifications due to slow tumbling of the radical. To achieve this simulation, an algorithm was developed by extending the well-known nitroxide slow-motion simulation technique for the coupling of one electron spin to two nuclear spins. An additional dynamic process responsible for the observed line broadening was found to occur between 180 K and room temperature; this broadening is consistent with an exchange between two conformations. The differences between the isotropic 31P couplings associated with the two conformers are shown to be probably due to an internal rotation about the P--P bond. 相似文献
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The compounds Ce(10)Cl(4)Ga(5) and Ln(3)ClGa(4) (Ln = La, Ce) were synthesized from stoichiometric mixtures of Ln, LnCl(3), and Ga under Ar atmosphere in sealed Ta ampules at 910-1020 degrees C for 25-26 days. Ce(10)Cl(4)Ga(5) is isostructural to La(10)Cl(4)Ga(5) (space group I4/mcm, No. 140) with lattice constants a = 7.9546(11) A, c = 31.793(6) A. Ln(3)ClGa(4) represents a new structural type, also in the space group I4/mcm, with a = 8.1955(8) and 8.1123(11) A, c = 11.363(2) and 11.229(2) A, respectively, for Ln = La and Ce. Ce(10)Cl(4)Ga(5) features building blocks of Ga-centered Ce(6) trigonal prisms and distinctive two-dimensional intermetallic CuAl(2) and U(3)Si(2) type nets. Its electronic structure falls within the realm of reduced rare-earth halides. Ln(3)ClGa(4) also contains the intermetallic CuAl(2) type nets, but the interstitials are inverted: The building blocks are Cl-centered Ln(6) octahedra. Its electronic structure is characterized by strong peripheral Ln-Ga bonding stabilizing the Ln(6)Cl octahedron which normally would have its Ln-Ln antibonding orbitals filled with electrons from interstitials beyond chalcogen. Magnetic susceptibility and conductivity measurements confirm the metallic nature of all three compounds. 相似文献
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Hansjürgen Schönert 《Journal of solution chemistry》2014,43(1):26-39
The concentration range of transference number measurements with the Hittorf cell has been extended up to a total concentration of c T = 3.4 mol·dm?3 for the H2O + NaCl + MgCl2 ternary system at (298.15 ± 0.05) °C. This was achieved with a redesigned Hittorf cell, by dividing each of the anodic/cathodic compartments into two subcompartments: one with a low concentration of H2O + NaCl for the electrode reaction and another one in contact with the middle compartment with the ternary solution to be measured. Measurements of the transference numbers were also made for the corresponding H2O + NaCl and H2O + MgCl2 binary systems. The experimental details and the results are described. 相似文献
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Hartmut B. Stegmann Hansjörg V. Dumm Klaus Scheffler 《Phosphorus, sulfur, and silicon and the related elements》2013,188(2):159-170
Abstract Pentakoordinierte Phosphorverbindungen vom Typ der 2.3-Dihydro-1.3.2-benzoxazaphosphole entstehen bei der Umsetzung von 2-Amino-phenolen oder N-Äthyl-2-hydroxy-anilinen mit Diphenyl-trifluorphosphoran unter Verwendung von Triäthylamin als Fluorwasserstoff-Akzeptor. Die Synthese einer großen Anzahl verschieden substituierter Spezies zeigt die Allgemeingültigkeit dieses Verfahrens. Die isolierbaren Substanzen werden durch NMR-Spektren (1H, 31P, 19F) und die üblichen analytischen Methoden charakterisiert. Die Markierung einer Verbindung mit 15N trägt wesentlich zur Struktursicherung bei. Bei den 3-H-2-Fluor-2.2-diphenyl-1.3.2-benzoxazaphospholen wurde ein bemerkenswerter Zusammenhang zwischen P–F-Kopplungskonstante und dem F-shift aufgefunden, der eine lineare Korrelation dieser beiden Größen erkennen läßt. Pentacoordinated phosphorus compounds of the type of 2,3-dihydro-1,3,2-benzoxazaphospholes originate from reaction of 2-aminophenol or N-ethyl-2-hydroxyaniline with diphenyl-trifluorophosphorane using triethylamine as an HF-acceptor. The described synthesis of a great number of differently substituted species indicates the wide field of application. The substances are characterized by nmr spectroscopy (1H, 31P, 19F) and the usual analytical methods. By marking one compound with 15N the structure assignment is proved. Remarkably, the compounds of the type 3-H-2-fluoro-2,2-diphenyl-1,3,2-benzoxazaphospholes exhibit a nearly linear correlation between the P–F-coupling constants and the F-chemical shift. 相似文献
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Jieping Wang Norbert Moszner Kurt Dietliker Hansjörg Grützmacher Robert Liska 《Journal of polymer science. Part A, Polymer chemistry》2016,54(4):473-479
The monoacylphosphineoxide (MAPO) salts Na‐TPO and Li‐TPO and the bisacylphosphineoxide (BAPO) salts BAPO‐ONa and BAPO‐OLi define an important and in the latter case a new class of water‐soluble photoinitiators (PIs) for radical polymerization. These compounds showed excellent water‐solubility of at least 29 g/L for Na‐TPO and up to 60 g/L for BAPO‐ONa in deionized water, thus exceeding the solubility of the state of the art PI for water‐based systems Irgacure 2959 ( I2959 ) 6‐ to 12‐fold. However, biocompatibility, storage stability, and reactivity were equally important to replace the state of the art compounds. Concerning these properties, the MAPO and BAPO salts were at least in the same range (biocompatibility, stability) or showed even better results (reactivity) and had the additional advantage of visible light initiation. Na‐TPO and Li‐TPO achieved double bond conversions of an aqueous solution of N‐acryloylmorpholine over 97% with broad band irradiation (320–500 nm), Li‐TPO showed additionally very good biocompatibility (LC50 = 3.1 mmol/L) and BAPO‐OLi showed highest reactivity with visible light irradiation. © 2015 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2016 , 54, 473–479 相似文献
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Dr. Dominikus Heift Dr. Zoltán Benkő Prof. Dr. Hansjörg Grützmacher 《Chemistry (Weinheim an der Bergstrasse, Germany)》2014,20(36):11326-11330
Unsaturated phosphorus compounds, such as phosphaalkenes and phosphaalkynes, show a versatile reactivity in cycloadditions. Although phosphaketenes (R?P?C?O) have been known for three decades, their chemistry has remained limited. Herein, we show that heteroatom‐substituted phosphaketenes, R3E?P?C?O (E=Si, Sn), are building blocks for silyl‐ and stannyl‐substituted five‐membered heterocycles containing three phosphorous atoms. The structure of the heterocyclic anion depends on the nature of the tetrel atom involved. Although the silyl analogue [P3C2(OSiR3)2]? is an aromatic 1,2,4‐triphospholide, the stannyl compound [P(CO)2(PSnR3)2]? is a 1,2,4‐triphosphacyclopenta‐3,5‐dionate with a delocalized OCPCO fragment. Because of their anionic character, these compounds can easily be used as building blocks, for example, in the preparation of a silyl‐functionalized hexaphosphaferrocene or the parent 1,2,4‐triphosphacyclopenta‐3,5‐dionate [P(CO)2(PH)2]?. NMR spectroscopic investigations and computations have shown that the heterocycle‐formation reactions presented herein are remarkably complex. 相似文献