ChemInform Abstract: REACTION OF MOLYBDENUM PENTACHLORIDE WITH TRICHLORONITROMETHANE; CRYSTAL STRUCTURE OF DIMERIC TRICHLOROOXO(PHOSPHORYL CHLORIDE) MOLYBDENUM

1981 ◽  
Vol 12 (24) ◽  
Author(s):  
J. STRAEHLE ◽  
G. BEYENDORFF ◽  
A. LIEBELT ◽  
K. DEHNICKE
IUCrData ◽  
2019 ◽  
Vol 4 (10) ◽  
Author(s):  
R. Ya. Okmanov ◽  
D. B. Tukhtaev ◽  
A. Sh. Saidov ◽  
B. Tashkhodjaev

The molecular salt, C23H26N2O2 +·Cl−, was obtained from 1-isobutyl-8,9-dimethoxy-3-phenyl-5,6-dihydroimidazo[5,1-a]isoquinoline, which was synthesized by cyclocondensation of α-benzoylamino-γ-methyl-N-[2-(3,4-dimethoxyphenyl)ethyl]valeramide in the presence of phosphoryl chloride. The tetrahydropyridine ring adopts a twist–boat conformation. In the crystal structure, centrosymmetric dimers are formed by N—H...Cl and C—H...Cl hydrogen bonds.


Author(s):  
Alex J. Veinot ◽  
Arthur D. Hendsbee ◽  
Jason D. Masuda

The title compound, C26H38ClN2OP, was synthesized by reacting phosphoryl chloride withN,N′-bis(2,6-diisopropylphenyl)ethane-1,2-diamine in the presence ofN-methylmorpholine which acted as an auxilliary base to quench the HCl released as a by-product. The resultantN-heterocyclic phosphine five-membered ring adopts a half-chair conformation and features a tetracoordinate P atom ligated by the chelating diamine [P—N = 1.6348 (14) and 1.6192 (14) Å], one double-bonded O atom [P1—O1 = 1.4652 (12) Å] and one Cl atom [P1—Cl1 = 2.0592 (7) Å]. The sterically hindered 2,6-diisopropylphenyl (Dipp) groups twist away from the central heterocycle, with torsion angles of −75.66 (19) and 83.39 (19)° for the P—N—Car—Carlinks. A number of intramolecular C—H...N, C—H...O and C—H...Cl close contacts occur. In the crystal, molecules are linked by C—H...O hydrogen bonds to generate [010] chains. C—H...π interactions are also observed.


1998 ◽  
Vol 53 (9) ◽  
pp. 1074-1076 ◽  
Author(s):  
Donna M. Smith ◽  
Bernhard Neumüller ◽  
Kurt Dehnicke

Abstract Pale brown single crystals of the title compound have been obtained by the reaction of Pb[N(SiMe3)2]2 with molybdenum pentachloride in ether solution as a result of a redox reaction. ClPb[N(SiMe3)2]3 crystallizes in the trigonal space group R3 with three formula units per unit cell. Lattice dimensions at -50 °C: a = b -1828.7(2), c = 854.5(1) pm. The compound forms monomeric molecules with bond lengths Pb-Cl = 247.9(4) pm and Pb - N = 213(2) pm.


1996 ◽  
Vol 49 (3) ◽  
pp. 311 ◽  
Author(s):  
DS Black ◽  
DC Craig ◽  
N Kumar

2,7:2,7:2,7-Linked calix [3] indoles (3a-d) have been prepared by the reaction of 4,6-dimethoxy-3-methylindole (1) and benzaldehydes with phosphoryl chloride or by a direct reaction of di (4,6-dimethoxy-3-methylindol-2-yl) phenylmethanes (2a-d) with phosphoryl chloride. An X-ray crystal structure determination of the macrocycle (3d) is reported. 4,6-Dimethoxy-3-methylindolemethanols (9) and (10) were prepared and reacted with phosphoryl chloride to study the mechanism of formation of the macrocycle.


Author(s):  
Douglas L. Dorset ◽  
Anthony J. Hancock

Lipids containing long polymethylene chains were among the first compounds subjected to electron diffraction structure analysis. It was only recently realized, however, that various distortions of thin lipid microcrystal plates, e.g. bends, polar group and methyl end plane disorders, etc. (1-3), restrict coherent scattering to the methylene subcell alone, particularly if undistorted molecular layers have well-defined end planes. Thus, ab initio crystal structure determination on a given single uncharacterized natural lipid using electron diffraction data can only hope to identify the subcell packing and the chain axis orientation with respect to the crystal surface. In lipids based on glycerol, for example, conformations of long chains and polar groups about the C-C bonds of this moiety still would remain unknown.One possible means of surmounting this difficulty is to investigate structural analogs of the material of interest in conjunction with the natural compound itself. Suitable analogs to the glycerol lipids are compounds based on the three configurational isomers of cyclopentane-1,2,3-triol shown in Fig. 1, in which three rotameric forms of the natural glycerol derivatives are fixed by the ring structure (4-7).


Author(s):  
George G. Cocks ◽  
Louis Leibovitz ◽  
DoSuk D. Lee

Our understanding of the structure and the formation of inorganic minerals in the bivalve shells has been considerably advanced by the use of electron microscope. However, very little is known about the ultrastructure of valves in the larval stage of the oysters. The present study examines the developmental changes which occur between the time of conception to the early stages of Dissoconch in the Crassostrea virginica(Gmelin), focusing on the initial deposition of inorganic crystals by the oysters.The spawning was induced by elevating the temperature of the seawater where the adult oysters were conditioned. The eggs and sperm were collected separately, then immediately mixed for the fertilizations to occur. Fertilized animals were kept in the incubator where various stages of development were stopped and observed. The detailed analysis of the early stages of growth showed that CaCO3 crystals(aragonite), with orthorhombic crystal structure, are deposited as early as gastrula stage(Figuresla-b). The next stage in development, the prodissoconch, revealed that the crystal orientation is in the form of spherulites.


Author(s):  
F.-R. Chen ◽  
T. L. Lee ◽  
L. J. Chen

YSi2-x thin films were grown by depositing the yttrium metal thin films on (111)Si substrate followed by a rapid thermal annealing (RTA) at 450 to 1100°C. The x value of the YSi2-x films ranges from 0 to 0.3. The (0001) plane of the YSi2-x films have an ideal zero lattice mismatch relative to (111)Si surface lattice. The YSi2 has the hexagonal AlB2 crystal structure. The orientation relationship with Si was determined from the diffraction pattern shown in figure 1(a) to be and . The diffraction pattern in figure 1(a) was taken from a specimen annealed at 500°C for 15 second. As the annealing temperature was increased to 600°C, superlattice diffraction spots appear at position as seen in figure 1(b) which may be due to vacancy ordering in the YSi2-x films. The ordered vacancies in YSi2-x form a mesh in Si plane suggested by a LEED experiment.


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