366 resultados para Œdème pulmonaire lésionnel


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本文通过LnCl_3·2LiCl (Ln=La, Nd)和等摩尔的CH_3C_5H_4Na在四氢呋喃中于室温反应,得到了一种新的阴离子型配合物[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Ln·THF] (Ln=La, Nd),对其进行了元素分析,红外光谱和核磁谱的鉴定,并测得了[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]的X-光晶体结构。晶体属单斜晶系,空间群为P_(21/n),晶脆参数为a=12.130(5),b=17.343(5),c=17.016(5)A,β=108.54(3)°,V=3393.87A~3,E=4,R=0.0505,中心钕原子分别与CH_3Cp~-。THF和四个桥氯配位,形成稳定的八配位的八面体结构。通过[Li(THF)_2]_2(M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]与2摩尔的t-BuLi在四氢呋喃和戊烷的混和溶液中反应,分离得到一种新的阴离子型配合物晶体,经元素分析,红外光谱,核磁和水解色质谱的鉴定,证明为[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3],此配合物不仅对空气和水汽极为敏感,而且对温度也很敏感,即使在-5 ℃下放置也会逐渐分解,发生β-H消除。我们进一步研究了LnCl_3·2LiCl与2摩尔的C_5H_5Na的四氢呋喃反应液在低温下与等摩尔的CH_3Li乙醚溶液反应,从中分离得到一种新的阴离子型烷基配合物晶体[Li(DME)_3][(η~5-C_5H_5)_3LnCH_3] (Ln=La, Nd)对其进行了元素分析,红外光谱,核磁和水解色质谱的鉴定。此外,从这一反应中还得到另一种副产物,经X-光结构鉴定为[Li(DME)_3]~+{[(η~5-C_5H_5)Nd(M-Cl)_2Nd(η~5-C_5H_5)](M-Cl)_4(M_4-D)[(η~5-C_5H_5)Nd(M-CH_3)_2Nd(η~5-C_5H_5)]}~(2-)[Li(DME)_3]~+。本文还研究了NdCl_3·2LiCl与2倍摩尔的CH_3C_5H_4Na的四氢呋喃反应液和等摩CH_3Li乙醚溶液于-78 ℃下反应,从中分离得到另一种新的阴离子型配合物[Li(DME)_3][(η~5-CH_3C_5H_4)_3NdCH_3]并对其进行了元素分析,红外光谱的鉴定。我们还研究了配合物[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3]对苯乙烯的催化聚合活性,发现它可以单独引发苯乙烯聚合,得无规聚苯乙烯。

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本工作用无水SmCl_3和YbCl_3每二摩尔比的叔丁基环戊二烯基钠在四氢呋喃中反应,合成了二(叔丁基环戊二烯基稀土氧化物(t-C_4H_9C_5H_4)_2Sm(DME)和(t-C_4H_9C_5H_4)_2YbCl(THF),配合物得到元素分析及~1H-NMR的鉴定。通过(t-C_4H_9C_5H_4)_2SmCl(DME)和(t-C_4H_9C_5H_4)_2YbCl(THF)分别每金属钠在四氢呋喃中的还原反应,分离得到了相应的二价稀土络合物(t-C_4H_9C_5H_4)_2Sm(DME)和(t-C_4H_9C_5H_4)_2Yb(THF)_2。络合物经元素分析,~1H-NMR鉴定,并通过对络合物具有弯曲的夹心式结构,中心金属离子Yb~(2+)除每两个五元环络合外,还与两个THF的氧配位,形成稳定的8配位结构。本工作还研究了二价络合物(t-C_4H_9C_5H_4)_2Sm(DME)的还原性,并通过(t-C_4H_9C_5H_4)_2Sm(DME)每phc≡CH在甲苯中反应,证明了(t-C_4H_9C_5H_4)_2Sm(DME)具有很强的还原性,能每phC≡CH发生单电子转移反应,从此瓜体系中分离得到了一个新的三价Sm~(3+)络俣物[(t-C_4H_9C_5H_4)_2Sm(u-C≡Cph)]_2。经X光单晶结构的鉴定,证明此络合物具有双分子结构,中心金属离子Sm~(3+)除了与两个叔丁基环戊二烯基负离子络合外,还与两个桥炔配位,构成八配位的结构。二价Yb~(2+)络合物(t-C_4H_9C_5H_4)_2Yb(THF)_2能与三苯氧膦在甲苯溶液中反应,发生配体交换,使络合物中的一个THF分子被三苯氧膦取代,得到(t-C_4H_9C_5H_4)_2Yb(opph_3)(THF)。此外,我们还研究了(C_tMe)_2Nd(u-Cl)_2Na(DME)_2与甲基萘钠在溶剂DME中的反应,结果表明,在这一体系中,发生了甲基萘钠对溶剂分子CH_3OCH_2CH_2OCH_3中CH_3-O键的断裂反应断裂反应产生的CH_3ONa能与(C_5Me_5)_2Nd(u-Cl)_2Na(DME)_2发生交换反应得到(C_5Me_5)_2Nd(u-Cl)_2Na(DME)_2。络合物经元素分析,水解色质(GC-MC)谱及~1H-NMR鉴定,并通过X光单晶结构的测定证明具有弯曲夹心式结构。

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Treatment of anilido-phosphinimine-ligated yttrium mono(alkyl) complex 1a, LY(CH2Si(CH3)(3))(THF) (L = o-(2,6-(C6H3Pr2)-Pr-i)NC6H4P(C6H4)(C6H5)N(2,4,6-C6H2Me3)), with 2 equiv of phenylsilane in DME afforded methoxy-bridged complex 2, [LY(mu-OCH3)](2), via the corresponding hydrido intermediate. When excess isoprene was added to the mixture of la and phenylsilane, a eta(3)-isopentene product, 3, LY(CH2C(CH3)=CHCH3)(THF), was isolated. A lutetium chloride, LLuCl(DME) (4), was generated through the reaction of lutetium mono(alkyl) complex 1b, LLu(CH2Si(CH3)(3))(THF), with [Ph3C]-[B(C6F5)(4)]center dot LiCl accompanied by the formation of [Li(DME)(3)](+)[B(C6F5)(4)](-). Metathesis reaction of 1b with excess AlMe3 at room temperature gave a methyl-terminated counterpart, 5, LLu(CH3)(THF)(2). In all these reactions, the Ln-C-phenyl bonds of complexes 1 remained untouched.

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The synthesis and catalytic activity of lanthanide monoamido complexes supported by a beta-diketiminate ligand are described. Donor solvents, such as DME, can cleave the chloro bridges of the dinuclear beta-diketiminate ytterbium dichloride {[(DIPPh)(2)nacnac]YbCl(mu-Cl)(3)Yb[(DIPPh)(2)nacnac](THF)} (1) [(DIPPh)(2)nacnac = N,N-diisopropylphenyl-2,4-pentanediimine anion] to produce the monomeric complex [(DIPPh)(2)nacnac]YbCl2(DME) (2) in high isolated yield. Complex 2 is a useful precursor for the synthesis of beta-diketiminate-ytterbium monoamido derivatives. Reaction of complex 2 with 1 equiv of LiNPr2i in THF at room temperature, after crystallization in THF/toluene mixed solvent, gave the anionic beta-diketiminate-ytterbium amido complex [(DIPPh)(2)nacnac]Yb(NPr2i)(mu-Cl)(2)Li(THF)(2) (3), while similar reaction of complex 2 with LiNPh2 produced the neutral complex [(DIPPh)(2)nacnac]Yb(NPh2)Cl(THF) (4). Recrystallization of complex 3 from toluene solution at elevated temperature led to the neutral beta-diketiminate-lanthanide amido complex [{(DIPPh)(2)nacnac}Yb(NPr2i)(mu-Cl)](2) (5). The reaction medium has a significant effect on the outcome of the reaction.

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Acetone and dimethyl ether( DME) have been shown to be reagent gases of exceptional utitlity and versatility for the characterization of a variety of class of organic compounds. The fragmentation mechanisms of the adduct product ions, formed by ion/molceule reaction of the substrate with the ionized gases, have been studied and substantiated by experiments with acetone-d(6) and DME-d(6).

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The properties of the films formed in the electrolyte of PC/DME LiClO4 on two kinds of carbon materials were examined by cathodic polarization measurements. The result suggested that the films on both carbon electrodes have different morphology which resulted in the different cen performance of the two carbon anodes.

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(Li.3DME)[eta(5)-C5H5)3NdC6H5], 1 was synthesized by the reaction of NdCl3.2LiCl, 2 equivalents of cyclopentadienylsodium and one equivalent of phenyllithium in THF at -78-degrees-C, and crystallized from THF and DME. The crystal structure of 1 was determined by X-ray diffraction method at -80-degrees-C. The crystal of 1 is triclinic, space group P1BAR with a = 15.752(6), b = 16.232(3), c = 23.038(7) angstrom, alpha = 108.81(2), beta = 93.31(3), gamma = 108.38(2)-degrees, Z = 6 and D = 1.33 g/cm3. Least-squares refinement (5732 observed reflections) led to a final R of 0.053. The complex consists of disconnected ion pairs of (Li.3DME)+ and [(eta(5)-C5H5)3NdC6H5]-. The neodymium atom was connected to three eta(5)-bonded cyclopentadienyls and one sigma-bonded phenyl in a distorted tetrahedral arrangement with Nd-C(sigma-) 2.593(17), 2.613(13) and 2.601(13) angstrom.

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标题配合物是以THF作溶剂,通过(C_5H_5)_2NdCl·ZLiCl和甲基萘钠的还原反应合成的。其晶体属单斜晶系,P 2/c空间群,晶胞参数α=9.235(2)A,b=11.695(2)A,c=20.810(3)A,β=92.88(1)°,Z=2。研究结果表明,标题配合物由相互不相联的〔Li3DME〕~+和〔(η~5-C_5H_5)_3Nd(μ-H)Nd(η~5-C_5H_5)_3〕~-离子对组成。阳离子中,Li原子与由3个DME提供的6个O原子配位,形成八面体构型,Li—O平均键长为2.116A;阴离子中,2个Nd原子不直接键合,系通过桥H联接,Nd—H=2.19A。此外,每个Nd原子各有3个C_5H_5~-与之配位,Nd—C平均键长为2.812A。

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This paper gives a brief review of R&D researches for light olefin synthesis directly and indirectly from synthesis gas in the Dalian Institute of Chemical Physics (DICP). The first pilot plant test was on methanol to olefin (MTO) reaction and was finished in 1993, which was based on ZSM-5-type catalyst and fixed bed reaction. In the meantime, a new indirect method designated as SDTO (syngas via dimethylether to olefin) was proposed. In this process, metal-acid bifunctional catalyst was applied for synthesis gas to dimethylether(DME) reaction, and modified SAPO-34 catalyst that was synthesized by a new low-cost method with optimal crystal size was used to convert DME to light olefin on a fluidized bed reactor. The pilot plant test on SDTO was performed and finished in 1995. Evaluation of the pilot plant data showed that 190-200 g of DME were yielded by single-pass for each standard cubic meter of synthesis gas. For the second reaction, 1.880 tons of DME or 2.615 tons of methanol produced 1 ton of light olefins, which constitutes of 0.533 ton of ethylene, 0.349 ton of propylene and 0.118 ton of butene. DICP also paid some attention on direct conversion of synthesis gas to light olefins. A semi-pilot plant test (catalyst 1.8 1) was finished in 1995 with a CO conversion > 70% and a C(2)(=)-C(4)(=) olefin selectivity 71-74% in 1000 h. (C) 2000 Published by Elsevier Science B.V. All rights reserved.