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111.
离子液体的酸性测定及其催化的二苯醚/十二烯烷基化反应 总被引:20,自引:0,他引:20
采用乙腈探针红外光谱法测定了[bmim]Cl/AlCl3类离子液体的酸性.结果表明,乙腈可以区分离子液体的酸类型(Bronsted酸或Lewis酸),同时可以指示离子液体的Lewis酸强度.使用[bmim]Cl/AlCl3类离子液体催化二苯醚与十二烯的烷基化反应,研究了离子液体的酸强度、反应温度和醚烯比对反应的影响,并与AlCl3催化体系进行对比.结果发现,该离子液体对二苯醚与十二烯烷基化反应的催化活性明显高于AlCl3.使用离子液体作催化剂显著提高了烷基化反应的产率,简化了产物的分离与提纯,且对环境友好.当控制反应温度为80℃,原料醚烯摩尔比为7,并采用酸强度适中的离子液体时,目标产物单十二烷基二苯醚的产率接近90%. 相似文献
112.
Poly(L -lactide-co-β-malic acid) was obtained after the hydrogenolysis of the copolymer of L -lactide (L-LA) and β-benzyl malate (MA). 1H-NMR demonstrated that the composition of the copolymer was identical to the feeding dose. Thermal property study revealed the morphology of the copolymer could be changed from semi-crystalline to amorphous with increasing hydrophilic β-malic acid content. The copolymers with 8 and 13 mol% β-malic acid content possessed enough mechanical property for fabricating cell scaffold. Degradation result demonstrated that most of the hydrophilic β-malic acid units broke down from the copolymer within 1 week and the ester bond between L -lactide and β-malic acid hydrolyzed prior to the inner ester bond of poly(L -lactide) (PLLA). Copyright © 2003 John Wiley & Sons, Ltd. 相似文献
113.
1,3-丙二胺的不对称双Schiff碱异三核配合物的合成表征、晶体结构与磁性研究 总被引:1,自引:0,他引:1
合成了一种新的不对称双Schiff碱Cu(II)单核配合物Cu(HLt) (1) (H3Lt为N-3-羧基水杨醛-N'-水杨醛-缩1,3-丙二胺)及其两个异三核配合物[(CuLt)2Ni]•2.5H2O (2)和[(CuLt)2Mn]•5H2O (3), 并用元素分析、红外光谱、电子光谱对它们进行了结构表征. 用X射线单晶衍射法测定了配合物3的晶体结构, 其晶胞中每个不对称单元包含一个异三核中性分子, 在此三核分子中, 中心Mn2+离子位于[O6]的变形八面体配位环境中, 两个端基Cu2+离子位于[N2O2]的平面正方场中. 在5~300 K范围内测定了两个三核配合物的变温磁化率, 经拟合得化合物2的磁交换参数为-57.7 cm-1, 化合物3的磁交换参数为-28.5 cm-1, 表明在两个异三核配合物中, 中心M2+离子与外部Cu2+离子间存在弱的反铁磁自旋交换作用. 相似文献
114.
The crystal structures of a pair isomers of [Co(3,3-tri)(amp)Cl][ZnCl4] (here 3,3-tri = N-(3-Aminoprop- yl)-1,3-propanediamine; amp=2-(Aminomethyl)pyridine) have been determined by single crystal X-ray diffrac-tion. They are the epimers with the only difference of the orientation of the Sec-NH proton in 3,3-tri ligand. The crystals with the anti-epimer (m1[ZnCl4]·CH3OH·H2O) are monoclinic, space group C2/c with eight molecules in a unit cell of dimensions a=30.401(5)?,b=8.0469(13)?,c=18.817(3)?,β=93.346(3)°,V=4595.3(12)?3,Dc=1.708g·cm-3,Z=8,F000=2416,R=0.0462,Rw=0.1304. The crystals of the syn-epimer (m2[ZnCl4]·H2O) are triclinic, space group P1 with two molecules in a unit cell of dimensions a=8.9752(12)?,b=9.8855(12)?,c=12.6886(16)?,α=89.228(3)°,β=76.447(2)°,γ=80.428(3)°,V=1078.8(2)nm3,Dc=1.721g·cm-3,Z=2,F000=568,R=0.0313,Rw=0.0929. The crystal parameters, such as bond lengths and angles, are well consistent with the data of an ab initio computational result (RHF/LANL2DZ opti-mised structure). The average error for bond length is about 1.6%, only two of them in the isomer m3 (Co-N2 and Co-N4) are over 3%, (3.09% and 4.28% respectively). The errormax for bond angle is 2.52%, the bond angles with an over 2% error are only 3.6% out of all bond angles. 相似文献
115.
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117.
Hua Xiao Bei Feng‐Li Wang Xin Yang Xu‐Jie Lu Lu‐De 《International journal of quantum chemistry》2006,106(5):1145-1152
A theoretical study of the polymerization reaction mechanism of maleic anhydride (MA) initiated by hydrate is presented. The reaction pathway has been studied with the density functional theory (DFT) method at the B3LYP/6‐311G** level. The geometrical parameters of transition states (TS) are optimized; intrinsic reaction coordinate (IRC) calculations have also been performed to obtain further credible features. Frequency analyses of all the stationary points are calculated at the same basis sets. The total energies of all geometries are corrected at second‐order Møller–Plesset (MP2)/6‐311G**. Calculation results reveal that the reaction mechanism is attributable to anion polymerization. © 2005 Wiley Periodicals, Inc. Int J Quantum Chem, 2006 相似文献
118.
The first total synthesis of (-)-calicoferol B (III) is described. The cyclozirconation product I, prepared in enantiomerically pure form, was converted into the CD ring chiron II. This was coupled with the aromatic A-ring, and then the side chain was constructed with control of relative and absolute configuration to complete the total synthesis of III. The first total synthesis of (-)-calicoferol B (1) is described. The cyclozirconation product 8, prepared in enantiomerically pure form, was converted into the CD ring chiron 6. This was coupled with the aromatic A-ring, and then the side chain was constructed with control of relative and absolute configuration to complete the total synthesis of 1. 相似文献
119.
Titanate nanoribbons were prepared via a hydrothermal treatment of rutile-type TiO2 powders in a 10 M NaOH solution at 200 °C for 48 h. The as-prepared titanate nanoribbons were then hydrothermally post-treated at 150 °C for 12-36 h. The titanate nanoribbons before and after hydrothermal post-treatment were characterized with FESEM, XRD, TEM, UV-VIS and nitrogen adsorption-desorption isotherms. The results showed that the hydrothermal post-treatment not only promoted the phase transformation from titanate to anatase TiO2, but also was beneficial to the removal of Na+ ions remained in the titanate nanoribbons. After hydrothermal post-treatment, the TiO2 samples retained the one-dimensional structure feature of the titanate nanoribbons and showed an obvious increase in the specific surface area and the pore volume. 相似文献
120.