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91.
自六十年代以来陆续发现稀土化合物具有一系列特殊的药效作用 ,使稀土元素在药物上的应用展现出广阔前景。目前 ,已有不少稀土化合物应用于临床 ,如抗凝血药物 3 磺酸异烟酸钕、左旋糖酸镨、钕混合物 ;消炎药水杨酸钐等。合成具有生物活性配体的稀土配合物是寻找有效稀土药物的一条途径。瑞香素是一具有抗菌、抗炎、抗凝血等生物活性的香豆素类化合物 ,其分子结构为 :稀土与香豆素类的配合物的合成与性质研究己有不少报道[1,2 ] 。为了进一步研究这类配合物的性质和生物活性 ,我们合成了六种瑞香素稀土配合物。1 实验部分1 .1 仪器及试剂… 相似文献
92.
用氯化聚乙烯接枝苯乙烯共聚物(CPE-g-St)和氯化聚乙烯(CPE)对聚苯乙烯(PS)进行共混改性。当CPE含量为25%时,用CPE-gSt改性的共混物的冲击强度为18.5kJ.m^-^2,是用CPE改性的共混物冲击强度的2.1倍;其拉伸强度不低于34MPa。 相似文献
93.
本文利用含氢有机硅化合物与含双键的氨基酸酯的加成反应,合成了5种新的有机硅氨基酸衍生物。介绍了一种合成N-烷基取代氨基酸酯的新方法。对新化合物进行了元素和光谱分析鉴定。 相似文献
94.
Clemens?Uanschou Roswitha?Frieht Fritz?PittnerEmail author 《Monatshefte für Chemie / Chemical Monthly》2005,136(8):1365-1381
Summary. In contrast to eukaryotic cells certain eubacterial strains have acquired the ability to utilize L-carnitine (R-(–)-3-hydroxy-4-(trimethylamino)butyrate) as sole source of energy, carbon and nitrogen. The first step of the L-carnitine degradation to glycine betaine is catalysed by L-carnitine dehydrogenase (L-CDH, EC 1.1.1.108) and results in the formation of the dehydrocarnitine. During the oxidation of L-carnitine a simultaneous conversion of the cofactor NAD+ to NADH takes place. This catabolic reaction has always been of keen interest, because it can be exploited for spectroscopic L-carnitine determination in biological fluids – a quantification method, which is developed in our lab – as well as L-carnitine production.Based on a cloned L-CDH sequence an expedition through the currently available prokaryotic genomic sequence space began to mine relevant information about bacterial L-carnitine metabolism hidden in the enormous amount of data stored in public sequence databases. Thus by means of homology-based and context-based protein function prediction is revealed that L-CDH exists in certain eubacterial genomes either as a protein of approximately 35 kDa or as a homologous fusion protein of approximately 54 kDa with an additional putative domain, which is predicted to possess a thioesterase activity. These two variants of the enzyme are found on one hand in the genome sequence of bacterial species, which were previously reported to decompose L-carnitine, and on the other hand in gram-positive bacteria, which were not known to express L-CDH. Furthermore we could not only discover that L-CDH is located in a conserved genetic entity, which genes are very likely involved in this L-carnitine catabolic pathway, but also pinpoint the exact genomic sequence position of several other enzymes, which play an essential role in the bacterial metabolism of L-carnitine precursors. 相似文献
95.
S. G. Wang Y.X. Qiu E. Neumann H. J. Deiseroth W. H. Eugen Schwarz 《无机化学与普通化学杂志》2003,629(10):1718-1730
About 60 molecular species composed of up to 10 mercury atoms and of oxygen atoms and/or of some other elements or groups (such as halogen, OH2, OH, H, alkali, NO3) have been investigated quantum chemically. Different density functional approaches and the ab initio SCF‐MP2 method were applied, comparing different basis sets and different atomic core sizes. It is important not to treat the Hg 5s, p, d as inactive core shells, and to use sufficiently many polarization functions. The shape of the 〉O‐Hg‐Hg‐O〈 units is not favorable concerning the formation of lattices composed of HgI, O and OH only. Despite its bulkiness, the OHgHgO units can easily come into contact with each other and then disproportionate. This is prevented in the so‐called ternary M‐HgI oxides by the embedded oxometallate (oxoacidic) anions. Furthermore, the HgI and HgII oxide bond energies are less favorable towards the stability of HgI oxo compounds, as compared to Hg halidic or oxoacidic compounds. Both points are not promising concerning the search for HgI oxides/hydroxides, although the preparation of such compounds, including spacer groups, by topochemical reactions can still not be excluded. So far, experimental efforts towards the synthesis of such a new class of compounds have only demonstrated that HgII is strictly preferred over HgI in the formation of solids of binary Hg‐O or ternary A‐Hg‐O composition (A = electropositive metal such as alkali, in contrast to M = transition or semi‐metal). This is so even if compounds containing ‘electron rich Hgδ— atoms’ (i.e. A‐Hg amalgams) are oxidized under mild conditions. 相似文献
96.
97.
Extension of the Chain Length of P2(SiMe3)4 by Reaction with LiBu The first steps of the reaction of P2(SiMe3)4 1 with LiBu in THF, which finally yields Li3P7 among other P-rich phosphides while P(SiMe3)3 and LiP(SiMe3)2 are simultaneously split off, were investigated by means of 31P-NMR spectroscopy. At ?20°C first of all one Si? P bond is cleaved generating Li(Me3Si)P? P(SiMe3)2 2 as well as BuSiMe3. Subsequently 2 forms Li(Me3Si)P? P(SiMe3)? P(SiMe3)2 5 and LiP(SiMe3)2 4 in equimolar ratios. This clearly demonstrates that both compounds are generated in one single reaction step. This behaviour is caused by the different basicity of the respective P-atoms in 2 , which necessarily results in a multicentered mechanism. 相似文献
98.
Hydroxylamine-O-sulfonic acid: a convenient reagent for the conversion of aldehydes into nitriles . Hydroxylamine-O-sulfonic acid (HAS) proved to be an excellent reagent for the conversion of aliphatic, aromatic and heteroatomic aldehydes into nitriles. There, aldehydes in the form of suspension in HAS water solution, react rapidely to give the corresponding nitriles in high yield. Only with formylpyridines could the intermediate oxime-O-sulfonic acids be isolated. 相似文献
99.
η5-C5H5V(NO)2CO is prepared in 40% yield by the photo-reaction between η5-C5H5V(CO)4 and [Co(NO)2Br]2.η5-C5H5V(NO)2CO reacts by an SN1 mechanism with various phosphines PZ3 to yield η5-C5-H5V(NO)2PZ3. The phosphine complexes are also obtained by photo-induced ligand interchange between η5-C5H5V(CO)3PZ3 and [Co(NO)2Br]2, or η5-C5H5V(CO)4 and Co(NO)2Br(PZ3). In all cases, the main cobalt species formed is Co(NO)(CO)3. While the one-bond vanadiumphosphorus coupling constants of most of the phosphine complexes are virtually the same (ca 410 Hz),the chemical shift values δ(51V) (?1328 to ?973 ppm rel. VOCl3) decrease in the order PF3 > CO > P(OR)3 > P(alkyl)3 > PPh3 > PPh(NEt2)2, reflecting the decreasing π-acceptor ability of the ligands. δ(51V) also decreases in the series of alkylphosphines PR3 (R = Me, Et, Prn, Bui, Pri, BUt) as the cone angle of PR3increases. 相似文献
100.