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71.
5-甲基吡咯-2-羧酸酯在磺酰氢,溴或四乙酸铅作用下,生成相应的在5-甲基上含取代基的产物,后者不经分离不便可自缩合得标题化合物,核磁共振氢谱研究和分子构象木匠,当3,3位的取代基为甲酸(酯)基或乙酸(酯)基时,可形成3,3位酯基与另一吡咯环上的氮氢之间的分子内氢键,而3,3位是其它取代基,如乙酰基,丙酸(酯)基,丁酸(酯)基时不能形成类似的分子内氢键。 相似文献
72.
73.
Takuji Hirose Kumiko Naito Megumi Nakahara Hiroaki Shitara Yoshio Aoki Hiroyuki Nohira Bruce W. Baldwin 《Journal of inclusion phenomena and macrocyclic chemistry》2002,43(1-2):87-93
Two Kemp's acid diamides were synthesized and applied to chiral amine recognition using 1H NMR analysis. One derivative based on 1-(1-naphthyl)ethylamine had good chiral recognition of six amines and was useful to determine the optical purity for three amines, i.e., methylbenzylamine, 1-(1-naphthyl)ethylamine and 1- henylpropylamine,however, the cyclohexylethylamine derivative showed little discrimination for the amines studied. Together with the results for alkylamines, it was shown that aromatic structure was important for aromatic shielding anisotropy and –– interactions between host and guest. The structure of the 1-(1-naphthyl)ethylamine derivative in solution was also considered based on 1H NMR data and computer simulation. 相似文献
74.
75.
Himansu Sekhar Sahoo S. Mahalakshmi Md. Hedayetullah Mir R. Raghunathan 《Tetrahedron letters》2007,48(5):761-765
A remarkable upfield shift of the pyα protons of complexed 2,2′-bipyridine in [cis-Pd(bpy)(NO3)2] is observed which is considered to originate from the anisotropic influence of suitably positioned coordinated nitrate anions around the Pd(II) centre of the molecule. A typical complexation-induced downfield shift is observed for the NH2 protons in [cis-Pd(en)(NO3)2] where ‘en’ stands for ethylenediamine. 相似文献
76.
负载型无铬超细铁基变换催化剂的制备和催化性能 总被引:11,自引:0,他引:11
以镁铝尖晶石为载体,以过渡金属氧化物为助剂,用吸附γ-Fe2O3胶体法制备了负载型无铬铁基变换催化剂.TEM,XRD,BET和活性测试结果表明,采用胶体负载法制备的变换催化剂,其活性组分Fe3O4以分立的超细微颗粒分布在镁铝尖晶石载体表面上,颗粒之间存在一定的间隔.过渡金属氧化物NiO或V2O5能够进入Fe3O4晶格形成固溶体,起到代替氧化铬的作用,提高催化活性.负载型催化剂FeNi/MgAl2O4(m(NiO)/m(Fe2O3)=3%)在汽/气比为1和空速为2000h-1的反应条件下,CO转化率在400和350℃时分别为95%和80%;在高空速和低汽/气比条件下也具有很好的催化性能.稳定性实验结果表明,该催化剂
具有良好的热稳定性和一定的抗硫能力.与非负载型催化剂相比,负载型催化剂具有更为优越的催化性能. 相似文献
77.
基团的电子效应与单取代苯对位1H、13C的化学位移*韩长日冯娇杨钟照平(海南师范学院化学系海口571158)关键词1H的化学位移13C的化学位移基团电负性共轭效应引言在1H、13C核磁共振谱中,化学位移值的大小主要取决于屏蔽作用的大小,而屏蔽作用的大... 相似文献
78.
Parameterization of peptide 13C carbonyl chemical shielding anisotropy in molecular dynamics simulations. 总被引:1,自引:0,他引:1
Daniel M Jordan K Maria Mills Ioan Andricioaei Akash Bhattacharya Kim Palmo Erik R P Zuiderweg 《Chemphyschem》2007,8(9):1375-1385
NMR chemical shielding anisotropy (CSA) relaxation is an important tool in the study of dynamical processes in proteins and nucleic acids in solution. Herein, we investigate how dynamical variations in local geometry affect the chemical shielding anisotropy relaxation of the carbonyl carbon nucleus, using the following protocol: 1) Using density functional theory, the carbonyl (13)C' CSA is computed for 103 conformations of the model peptide group N-methylacetamide (NMA). 2) The variations in computed (13)C' CSA parameters are fitted against quadratic hypersurfaces containing cross terms between the variables. 3) The predictive quality of the CSA hypersurfaces is validated by comparing the predicted and de novo calculated (13)C' CSAs for 20 molecular dynamics snapshots. 4) The CSA fluctuations and their autocorrelation and cross correlation functions due to bond-length and bond-angle distortions are predicted for a chemistry Harvard molecular mechanics (CHARMM) molecular dynamics trajectory of Ca(2+)-saturated calmodulin and GB3 from the hypersurfaces, as well as for a molecular dynamics (MD) simulation of an NMA trimer using a quantum mechanically correct forcefield. We find that the fluctuations can be represented by a 0.93 scaling factor of the CSA tensor for both R(1) and R(2) relaxations for residues in helix, coil, and sheet alike. This result is important, as it establishes that (13)C' relaxation is a valid tool for measurement of interesting dynamical events in proteins. 相似文献
79.
80.
The water gas shift reaction (CO + H2O = CO2+ H2) is catalyzed by aqueous metal carbonyl systems derived from simple mononuclear carbonyls such as Fe(CO)5 and M(CO)6 (M = Cr, Mo, and W) and bases in the 140–200 °C temperature range. The water gas shift reaction in a basic methanol-water solution containing Fe(CO)5 is first order in [Fe(CO)5], zero order in [CO], and essentially independent of base concentration and appears to involve an associative mechanism with a metallocarboxylate intermediate [(CO)4Fe-CO2H]–. The water gas shift reactions using M(CO)6 as catalyst precursors are first order in [M(CO)6], inverse first order in [CO], and first order in [HCO2
–] and appear to involve a dissociative mechanism with formatometallate intermediates [(CO)5M-OCHO]–.The Reppe hydroformylation of ethylene to produce propionaldehyde and 1-propanol in basic solutions containing Fe(CO)5 occurs at 110–140 °C. This reaction is second order in [Fe(CO)5], first order in [C2H4] up to a saturation pressure >1.5 MPa, and inhibited by [CO]. These experimental results suggest a mechanism where the rate-determining step involves a binuclear iron carbonyl intermediate. The substitution of Et3N for NaOH as the base facilitates the reduction of propionaldehyde to 1-propanol but results in a slower rate for the overall reaction.The homogeneous photocatalytic decomposition of the formate ion to H2 and CO2 in the presence of Cr(CO)6 appears to be closely related to the water gas shift reaction. The rate of H2 production from the formate ion exhibits saturation kinetics in the formate ion and is inhibited by added pyridine. The infrared spectra of the catalyst solutions indicate an LCr(CO)5 intermediate. Photolysis of the Cr(CO)6/formate system in aqueous methanol in the presence of an aldehyde RCHO (R =n-heptyl,p-tolyl, andp-anisyl) results in catalytic hydrogenation of the aldehyde to the corresponding alcohol RCH2OH by the formate ion. Detailed kinetic studies onp-tolualdehyde hydrogenation by this method indicates saturation kinetics in formate ion, autoinhibition by thep-tolualdehyde, and a threshold effect for Cr(CO)6 at concentrations >0.004 mol L–1. The presence of an aldehyde can interrupt the water gas shift catalytic cycle by interception of an HCr(CO)5
– intermediate by the aldehyde.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 9, pp. 1533–1539, September, 1994. 相似文献