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1.
Nanoparticles of a Bi(III) coordination polymer, {[Bi(μ-4,4′-bipy)Br4] · (4,4′-Hbipy)} n (1) (4,4′-bipy = 4,4′-bipyridine), were synthesized by a sonochemical method. The new nanoparticles were characterized by scanning electron microscopy, X-ray powder diffraction (XRD), IR spectroscopy, and elemental analyses. Compound 1 was structurally characterized by single-crystal X-ray diffraction. The thermal stabilities of 1 as bulk and at nanosize were studied by thermal gravimetric (TG) and differential thermal analyses (DTA). The Bi2O3 and BiBr3 nanostructures were obtained by calcinations of nanostructure of 1 in air and argon.  相似文献   

2.
Abstract—X-ray phase analysis, thermogravimetry, IR spectroscopy, and chemical analysis were used to study bismuth(III) precipitation from nitrate solutions upon addition of aqueous solutions of hydrobromic acid or ammonium bromide, and from bismuth-containing hydrobromic acid solutions. The conditions in which bismuth(III) oxobromide of BiOBr composition is formed were determined and the possibility of obtaining a high-purity product was assessed.  相似文献   

3.
Li K  Huang G  Xu Z  Zhang M  Zeller M  Hunter AD  Chui SS  Che CM  Wong WY 《Inorganic chemistry》2007,46(12):4844-4849
We introduce the 1,2,3-tris(organylthiophenyl) group as a symmetrical, multidentate chelation link for building coordination networks. For this, zinc(II) 5,10,15,20-tetrakis[3',4',5'-tris(methylthio)phenyl]porphyrin was synthesized and integrated into a two-dimensional network via coordination with BiBr3. The coordination link exhibits an unusually complex bonding pattern, involving six S atoms from two neighboring ligands that form multiple Bi-S interactions (distances ranging from 3.08 to 3.63 A) with a dimerlike unit of Bi2Br6. The electronic interaction between the porphyrin center and the Bi2Br6 block was illustrated by the diffuse-reflectance spectrum of the network compound, in which a modest red-shifted feature at 1.8 eV was seen (while the Q-band absorption of the metalloporphyrin core continues to be dominant at 1.9 eV).  相似文献   

4.
Derivatives of 1,4-dihydroxypiperazine-2,3-dione were obtained by reaction of cis-1,2-bis(hydroxyamino)cycloalkanes with diethyl oxalate. Their alkylation with CH2N2 or Mel afforded 1,4-dimethoxypiperazine-2,3-diones. Hydrolysis of the latter gave 1,2-bis(methoxyamino)cycloalkanes.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 925–929, April, 1996.  相似文献   

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Two new metal-organic frameworks, namely, Cd(Pda)(Bix)0.5(H2O) (I) and Cd2(Glut)2(Bix)(H2O) (II) (H2Pda is 1,3-phenylenediacetic acid, H2Glut is glutaric acid, and Bix is 1,4-bis(imidazol-1-ylmethyl)benzene), have been synthesized under hydrothermal conditions by employing mixed ligands with Cd(II) nitrate. In complex I, the adjacent Cd(II) atoms are bridged by two Pda ligands to result in 1D Cd(II)-Pda double chains, which are further linked by Bix ligands to generate a SQL with the node defined by a Cd(II) dimer, whereas II represents a three-dimensional coordination polymer with an unprecedented (42.5)2(44.59.68.75.82) topology, in which infinite cadmium-carboxylate chains are linked by the ligands to form a metal-organic coordination network. Moreover, the luminescence properties of two complexes have also been investigated.  相似文献   

7.
The compound 2,6-bis(N-tert-butylacetamide)pyridine (2) was obtained via a Ritter synthesis, and oxidation with oxone provided the title pyridine-N-oxide (3). The compounds were characterized by spectroscopic methods, and the molecular structure of the N-oxide was determined by single-crystal X-ray diffraction methods. The coordination chemistry with Eu(NO3)3 was examined by using 1:1 and 2:1 ligand/Eu ratios, and a single-crystal X-ray analysis for Eu(3)(NO3)3(H2O) was completed. The ligand 3 is found to chelate in a tridentate fashion on the Eu(III).  相似文献   

8.
Lee C  Lee J  Lee SW  Kang SO  Ko J 《Inorganic chemistry》2002,41(12):3084-3090
The 1,2-bis(chlorogermyl)- (1) and 1,2-bis(bromostannyl)carborane (2) have been prepared by the reaction of dilithio-o-carborane with Me(2)GeCl(2) and Me(2)SnBr(2), respectively. Compounds 1 and 2 are found to be good precursors for the synthesis of a variety of cyclization compounds. The Wurtz-type coupling reaction of 1 and 2 using sodium metal afforded the four-membered digerma compound 3 and five-membered tristanna compound 4, respectively. The salt elimination reactions of 1 and 2 using Li(2)N(t)Bu and Li(2)PC(6)H(5) afforded the cyclic products [structure: see text]. The 1,2-bis(dimethylgermyl)carborane 9 and 1,2-bis(dimethylstannyl)carborane 10 were prepared by the reaction of 1 and 2 with sodium cyanoborohydride. The reactions of 9 and 10 with Pd(PPh(3))(4) afforded the bis(germyl)palladium 12 and bis(stannyl)palladium 13 complexes, respectively.  相似文献   

9.
Five structually distinct coordination polymers [Cd(bte)3](NO3)2 n (1), [Cd(bte)2(H2O)2](NO3)2 n (2), [Cd(bte)(NO2)2] n (3), [Cd(bte)2(H2O)2](H2O)2(ClO4)2 n (4) and [Cd(bte)(NCS)2]n (5) (bte = 1,2-bis(1,2,4-triazol-1-yl)ethane) have been synthesized and characterized. The structures of 1, 2, 3, 4 and 5 consist of a double interpenetrating three-dimensional -poloniumn cubic network, a two-dimensional (4,4) network, a two-dimensional rhombic network, a one-dimensional double chain containing 18-membered [Cd2(bte)2] rings and a two-dimensional rhombic network containing eight-membered [Cd2(SCN)2] rings, respectively.  相似文献   

10.
11.
Some indium(III), antimony(III) and bismuth(III) dihalide complexes containing deprotonated, tridentate thio- and selenosemicarbazone ligands were prepared and were fully characterized by spectroscopic methods. In addition, the crystal structures of some of the compounds were obtained. TGA and DSC analyses were carried out on selected samples to assess their suitability as single-molecule precursors for metal selenide nanomaterials.  相似文献   

12.
Nano-particles of a new Bi(III) supramolecular compound, {Bi2(μ-4,4′-bipy)Cl10] · 2(4,4′-Hbipy) · (4,4′-H2bipy) · 2H2O} (1) {4,4′-bipy = 4,4′-bipyridine}, were synthesized by a sonochemical method. The nano-material was characterized by scanning electron microscopy, X-ray powder diffraction (XRD), IR spectroscopy and elemental analyses. Crystal structure of compound 1 was determined by X-ray crystallography. Calcination of the nano-particles of compound 1 at 400 °C under air atmospheres yields nano-sized particles of α-Bi2O3.  相似文献   

13.
[reaction: see text] 1,2-Bis(2,5-diphenylphospholano)ethane (Ph-BPE) has been synthesized for the first time through employment of an undemanding synthetic pathway. The new ligand exhibits enhanced activity and selectivity over the existing members of the BPE ligand family in rhodium-catalyzed asymmetric hydrogenation.  相似文献   

14.
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17.
Two BiBr3 supramolecular complexes, [Bi(2-bpmp)Br2.06Cl0.94] (1) and [Bi(4-H2bpmp)Br4.29Cl0.71]·H2O (2) {2-bpmp = N,N′-bis(2-pyridylmethyl)piperazine and 4-bpmp = N,N′-bis(4-pyridylmethyl)piperazine}, were prepared by reaction of bismuth(III) chloride and potassium bromide with two nitrogen donor ligands under thermal gradient conditions using the branched tube method. Compounds 1 and 2 were structurally characterized by single-crystal X-ray diffraction. In monomeric 1, bismuth is coordinated by two pyridyl and piperazine nitrogens of 2-bpmp, and by three halides. Compound 2 is also monomeric but is bonded to only one pyridyl nitrogen. In both compounds, extensive hydrogen-bonding interactions lead to supramolecular networks; in 2, the hydrogen bonds are augmented by ππ stacking interactions. Thermal stabilities of both compounds were studied by thermal gravimetric and differential thermal analyses. Thermal decomposition of nanosized 1 and 2 in air produced BiOBr nanoparticles.  相似文献   

18.
The new Ar-BIAN complexes [(mes-BIAN)InCl(3)(THF)] (1), [(mes-BIAN)(2)Tl][PF(6)] (2), [(dipp-BIAN)SnCl(4)] (3), [(dipp-BIAN)SbCl(3)] (4), [(dipp-BIAN)BiCl(3)] (5) and [(mes-BIAN)BiCl(3)] (6) have been prepared by treatment of the neutral mes- and dipp-substituted BIAN ligands with the p-block reagents InCl(3), TlPF(6), SnCl(4), SbCl(3), and BiCl(3). The molecular structures of complexes 1-6 have been determined by single-crystal X-ray diffraction methods. However, only the atom connectivity was established for 5.  相似文献   

19.
The reduction of 1,2-bis(trimethylsilylimino)acenaphthene (tms-BIAN, 1) with metallic lithium in toluene affords the dilithium salt (tms-BIAN)Li 1,3,2-Diazasiloles (tms-BIAN)SiCl2 (2) and (tms-BIAN)SiMe2 (3) were prepared by the reactions of (tms-BIAN)Li2 with SiCl4 and Me2SiCl2, respectively. The reaction of (tms-BIAN)Li2 with an excess of Me2SiCl2 produces (Cldms-BIAN)SiMe2 (4), where Cldms-BIAN is 1,2-bis(chlorodimethylsilylimino)-acenaphthene. The compound (tms-BIAN)(SiCl3)2 (5) containing two different silyl substituents (Me3Si and Cl3Si) at each nitrogen atom was synthesized by the reaction of compound 1 with Cl3SiSiCl3. The elimination of SiCl4 from compound 5 is accompanied by cyclization to give derivative 2. Compounds 2-5 were characterized by 1H, 13C, and 29Si NMR spectroscopy. The crystal structures of 2-5 were established by X-ray diffraction.  相似文献   

20.
The diamine 1,2-bis(4-aminophenoxy)propane, containing the flexible 1,4-dioxa-2-methylbutyl-ene unit, was synthesized. Polyimidization was carried out with 5,5′-[2,2,2-trifluoro-(trifluoromethyl)ethylidine]bis-1,3-isobenzofurandione in m-cresol employing toluene as azeotroping agent to yield a polyimide that was soluble in a variety of solvents and had an inherent viscosity of 0.84 dL/g in N,N-dimethylformamide. Poly(amic acid) formation with pyromellitic dianhydride, 4,4′-carbonyldiphthalic anhydride, and 5,5′-[ethanediylbis(oxy)]-bis-1,3-isobenzofurandione was carried out in N,N-dimethylformamide with imidization completed by heating at 160°C for 24 h under vacuum. All of the polyimides exhibited a 5% weight loss in air and in helium by 420°C.  相似文献   

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