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91.
A phthalazinone monomer with an allyl group, i.e. 4-(3-allyl-4-hydroxyphenyl)phthalazin-1(2H)-one, was synthesized and then copolymerized with 4-(4-hydroxylphenyl)(2H)-phthalazin-1-one and 2,6- diflurobenzonitrile by means of aromatic nucleophilic polycondensation to provide a series of crosslinkable poly(aryl ether nitrile)s. The virgin copolymers exhibited good solubility in polar organic solvents with relative high molecular weights (Mw: 45,130-58,403, inherent viscosities: 0.58-0.75 dL/ g). After cross-linking, the thermal stability and solvent resistance of the polymer increased.  相似文献   
92.
We describe a convenient method for the synthesis of 1,2-disubstituted acetylenes via a cross-coupling reaction of (bromoethynyl)benzene with Grignard reagents. The reaction of (bromoethynyl)benzene (1 mmol) with Grignard reagent (1.3 mmol) mediated by NiCl2 (4 mol%) and (p-CH3Ph)3P (8 mol%) in THF could produce 1,2-disubstituted acetylenes in good yields at room temperature.  相似文献   
93.
In this work, MoOx promoted Ir/SiO2 catalysts were prepared and used for the selective hydrogenolysis of tetrahydrofurfuryl alcohol (THFA) to 1,5-pentanediol in a continuous flow reactor. The effects of different noble metals (Ir, Pt, Pd, Ru, Rh), supports and Ir contents were screened. Among the investigated catalysts, 4 wt%Ir-MoOx/SiO2 with a Mo/Ir atomic ratio of 0.13 exhibited the best catalytic performance. The synergy between Ix particles and the partially reduced isolated MoOx species attached on them is essential for the excellent catalytic performance of Ix-MoOx/SiO2. The catalyst exhibited a better hydrogenolysis efficiency of THFA with the selectivity of 1,5-pentanediol of 65%-74% at a conversion of THFA of 70%-75% when the initial THFA concentration is ranging from 20 wt% and 40 wt%. And higher system pressure was also in favor of the conversion of THFA. During a stability test, the conversion of THFA and 1,5-pentanediol yield over Ix-MoOz/SiO2 decreased with reaction time, which can be explained by the leaching of Mo species during the reaction.  相似文献   
94.
A series of high surface area graphitic carbon materials (HSGCs) were prepared by ball-milling method. Effect of the graphitic degree of HSGCs on the catalytic performance of Ba-Ru-K/HSGC-x (x is the ball-milling time in hour) catalysts was studied using ammonia synthesis as a probe reaction. The graphitic degree and pore structure of HSGC-x supports could be successfully tuned via the variation of ball-milling time. Ru nanoparticles of different Ba-Ru-K/HSGC-x catalysts are homogeneously distributed on the supports with the particle sizes ranging from 1.6 to 2.0 nm. The graphitic degree of the support is closely related to its facile electron transfer capability and so plays an important role in improving the intrinsic catalytic performance of Ba-Ru-K/HSGC-x catalyst.  相似文献   
95.
The title compound [Cu2(μ2-dppm)2(MeCN)2(μ2-MeCN)](ClO4)2·MeCN (dppm = bis(diphenylphosphino)methane) has been prepared and characterized. It crystallizes in the monoclinic system,space group P21/n,with a = 11.904(6),b = 20.755(11),c = 24.744(13)A,β = 98.226(12)°,C58H56Cl2Cu2N4O8P4,Mr = 1258.93,V = 6051(5) A^3,Z = 4,Dc = 1.382 g/cm^3,μ = 9.52 mm^-1,F(000) = 2592,R = 0.0533 and wR = 0.1295 for 6175 observed reflections with I 〉 2σ(I). Each Cu(I) center is tetrahedrally coordinated by two phosphine atoms from two bridging dppm ligands,one nitrogen atom from a terminally coordinated acetonitrile molecule,and another nitrogen atom from a μ2-acetonitrile molecule. The two Cu(I) centers are bridged by two dppm ligands as well as a unique acetonitrile molecule. The full molecule exhibits a 'chair-like' configuration. This dinuclear complex exhibits intense or middle photoluminescence at room temperature in the solid state or actonitrile solution at 486 nm.  相似文献   
96.
A new dinuclear copper(Ⅱ) complex with imino nitroxide radicals [Cu2(NO3)2(IM- 1 ′-MeBzIm)2(dca)2] (IM-1 ′-MeBzIm = 2-{2′-[(1′-methyl)benzimidazolyl]}-4,4,5,5-tetramethylimidazoline-1-oxyl, dca = dicyanamide anion) has been prepared and structurally characterized by single-crystal X-ray diffraction. The complex crystallizes in triclinic, space group P 1^-, with α = 9.440(5), b = 10.124(6), c = 11.603(7) A, α = 102.904(7), β = 94.033(6),γ = 104.299(7)°, C34H40Cu2N16O8, Mr = 927.90, V= 1038.2(10) A^3, Z = 1, Dc = 1.484 g/cm^3, μ(MoKα) = 1.093 mm^-1, F(000) = 478, R = 0.0609 and wR = 0.1512 for 2889 observed reflections with Ⅰ 〉 2σ(I). X-ray analysis reveals that two Cu(Ⅱ) atoms are bridged by two dicyanamides to form a centrosymmetric Cu(Ⅱ)-Cu(Ⅱ) dinuclear entity. Every Cu(Ⅱ) ion is five-coordinated with a distorted square pyramidal coordination geometry and IM-1′-MeBzlm ligand coordinates to the metal ion with the k^2 N(1 ′-MeBzlm), O(IM) mode to avoid steric hindrance with the methyl group in the complex. Meanwhile, the molecules are linked by intermolecular hydrogen bonds, leading to a 1-D chain structure. Moreover, such chains are further linked by π-π stacking interactions to form a 2-D network structure. Magnetic measurement demonstrates that the intramolecular exchange couplings between Cu(Ⅱ) ion and the IM-1 ′-MeBzIm are ferromagnetic with J = 12.46 cm^-1, where the spin Hamitonian is defined as H^ = -2JS^1S^2 within the complex.  相似文献   
97.
The reaction of Co(OAc)2·4H2O with the Schiff base H2L in a methanol solution affords the red crystals of { [Co^ⅢL2]·[Co^Ⅱ(H2O)6]0.5·2.25H2O}4 1 (H2L = N-(2-hydroxyphenyl) salicylidenimine). The molecular and crystal structures were determined by single-crystal X-ray diffraction. The crystal is of monoclinic, space group P21/n, C104Hi14Co6NaO37, Mr = 2421.61, a = 10.625(3), b = 16.335(4), c = 15.265(4)A^°, β = 102.990(4)°, V= 2581.6(11)A^°^3, Z = 1, Dc= 1.558 g/cm^3,μ = 1.034 mm^-1, F(000) = 1252, R = 0.0414 and wR = 0.1167 for 5889 reflections. The Co(HI) atom is six-coordinated by two nitrogen atoms and four oxygen atoms of two tridentate L ligands. The abundant hydrogen bonding interactions extend the complex into a one-dimensional supra- molecular framework. The uncoordinated water molecules act as space-fillers and consolidate the whole architecture through the hydrogen bonding interactions.  相似文献   
98.
环三藜芦烃的分子识别与组装   总被引:1,自引:0,他引:1  
环三藜芦烃是一类基于藜芦醚与甲醛缩聚物的大环主体分子,其具有独特的C3对称结构和刚性的富电子空腔,在超分子化学、材料科学等方面具有潜在的应用价值,受到人们越来越多的重视.本文主要概述了近年来环三藜芦烃及其衍生物在分子识别与超分子组装方面的一些研究进展.  相似文献   
99.
首先通过电聚合方法在玻碳电极表面制备了聚(3-甲基噻吩)(P3MT)修饰膜,然后在一定电位下将DNA分子电沉积到P3MT表面,制备了DNA/(P3MT)复合膜修饰玻碳电极.研究了8-羟基-2’-脱氧鸟嘌呤核苷(8-OH-dG)在该复合膜修饰电极上的伏安行为以及扫描速度、pH值和尿酸对其伏安行为和检测的影响.实验结果表明,该复合膜修饰电极结合了P3MT和DNA两者的优点,使8-OH-dG在复合膜修饰电极上的电化学行为明显改善,而且具有很好的重现性和稳定性.在0.1mol/LpH7.0的磷酸盐缓冲溶液(PBS)中,8-OH-dG的氧化峰电流与其浓度在0.28~4.2μmol/L和4.2~19.6μmol/L两个范围内成良好的线性关系,检出限为56nmol/L(S/N=3).该研究可以为制备HPLC或毛细管电泳电化学检测器检测8-OH—dG打下一定的基础,因此在检测尿样中8-OH-dG的研究方面具有潜在的应用价值.  相似文献   
100.
应用全细胞膜片钳技术研究了胞外高钾对大鼠背根神经元(DRG)超极化电流(Ih)的影响.结果表明,Ih随着胞外钾离子浓度的增大而增大,同时随着外加刺激电压的增高而增强.当胞外钾离子浓度[Kext]为4,8和16mmol/L时,半数激活电压V1/2分别为-98±1.9,-106±1.3(p〈0.05)和-110±1.0mV(p〈0.05),其对应的最大电流的峰值分别为1085±340,1576±409和2124±614pA,与4mmol/L比较,后者分别增长了45%和92%.胞外高钾使,Ih激活曲线显著左移,说明高Kext改变了超极化电流的激活过程.提高细胞外钾离子浓度,可以使早期钾通道(又称快通道)的激活时间常数增大,使晚期钾通道(又称慢通道)激活时间常数减小.当胞外钾离子浓度由4mmol/L升高到8和16mmol/L时,翻转电位右移,但不具有显著性差异.结果提示,细胞外高浓度钾可增强大鼠背根神经元超极化电流,Ih,改变Ih的激活过程,从而提高了神经元的兴奋性,产生不正常的动作电位,对神经细胞产生损伤.  相似文献   
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