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851.
852.
反相高效液相色谱/电喷雾质谱法分析化学合成七肽粗产物 总被引:1,自引:1,他引:1
利用RP—HPLC/ESI—MS直接分析用芴甲氧羰基(Fmoc)固相多肽合成方法在PHB树脂上偶联合成的一个七肽(H2N—Tyr—Val—Asn-Thr-Asn—Met—Gly—COOH,Mr797.3)粗产物。RP—HPLC显示合成粗产物含有1个主成分,4个次要成分和多个微量成分;与之联用的电喷雾质谱则同步准确地测定出各成分的分子量(m/z)并自动对各主要成分的化学结构进行了串联质谱分析。结果证明,粗产物中的主成分即为目标七肽,另外几个主要副产物为七肽的氧化产物或残缺肽。 相似文献
853.
854.
Natural cellulose substances have been proven to be ideal structural templates and scaffolds for the fabrication of artificial functional materials with designed structures, psychochemical properties and functionalities. They possess unique hierarchically porous network structures with flexible, biocompatible, and environmental characteristics, exhibiting great potentials in the preparation of energy-related materials. This minireview summarizes natural cellulose-based materials that are used in batteries, supercapacitors, photocatalytic hydrogen generation, photoelectrochemical cells, and solar cells. When natural cellulose substances are employed as the structural template or carbon sources of energy materials, the three-dimensional porous interwoven structures are perfectly replicated, leading to the enhanced performances of the resultant materials. Benefiting from the mechanical strengths of natural cellulose substances, wearable, portable, free-standing, and flexible materials for energy storage and conversion are easily obtained by using natural cellulose substances as the substrates. 相似文献
855.
Two Cp*−RhIII based trefoil knots were obtained in high yield under ambient conditions via the coordination-driven self-assembly of semi-rigid thioether dipyridyl ligand 1,4-bis[(pyridin-4-ylthio)methyl]benzene ( L1 ), ligand chloranilic acid (H2− CA ) and 6,11-dihydroxytetracene-5,12-dione (H2- TtDo ) with Cp*RhIII metal corner units, respectively. Furthermore, using the bulkier 4,4′-{[(2,5-dimethyl-1,4-phenylene)bis(methylene)]bis(sulfanediyl)}dipyridine ( L2 ) in the place of ligand L1 in the construction process resulted in the formation of a teranuclear metallacycle and a template-free Borromean ring in high yields thanks to significantly altered intermolecular forces between the constituent ligands induced by the sterically-hindering methyl groups of L2 , as demonstrated via a detailed X-ray crystallographic analysis and NMR spectroscopy. 相似文献
856.
《印度化学会志》2021,98(10):100150
The traditional methods of synthesis of biguanide drugs generally result in the formation of high levels of waste. In this study, we have developed a simple and green route for the synthesis of olanexidine, the novel antimicrobial compound developed by Otsuka Pharmaceutical Factory Inc. This molecule has been clinically explored in Japan for pre-operative skin preparations. The proposed synthesis scheme is beneficial as it has obviated the use of harmful sodium dicyanamide and has employed the readily available dicyandiamide to facilitate cyanoguanidylation of 3,4-dichlorobenzylamine into 3,4-dichlorobenzylbiguanide. This intermediate was further condensed with 1-bromooctane, using tetrabutyl ammonium bromide as the phase transfer catalyst, in a biphasic solvent system comprising of water and ethyl acetate. The developed method resulted in an overall yield of 76% of olanexidine. 相似文献
857.
《中国化学快报》2021,32(9):2828-2832
A mesoporous cobalt aluminate (CoAl2O4) spinel is synthesized through a combustion method and adopted for the activation of peroxymonosulfate (PMS) to degrade organic pollutants. Multiple characterization procedures are conducted to investigate the morphology and physicochemical properties of the CoAl2O4 spinel. Due to its mesoporous structure, large surface area, and high electrical conductivity, the obtained CoAl2O4 exhibits remarkable catalytic activity for Rhodamine B (RhB) degradation. Its RhB degradation rate is 89.0 and 10.5 times greater than those of Co3O4 and CoAl2O4 spinel prepared by a precipitation method, respectively. Moreover, the mesoporous CoAl2O4 spinel demonstrates a broad operating pH range and excellent recyclability. The influence of several parameters (catalyst amount, PMS concentration, initial pH, and coexisting inorganic anions) on the oxidation of RhB is evaluated. Through quenching tests and electron paramagnetic resonance experiments, sulfate radicals are identified as the predominant reactive species in RhB degradation. This paper provides new insights for the development of efficient, stable, and reusable cobalt-based heterogeneous catalysts and promotes the application of persulfate activation technology for the treatment of refractory organic wastewater. 相似文献
858.
An unprecedented chiral secondary amine-catalyzed [3 + 3] annulation of isatin N,N'-cyclic azomethine imines with α,β-unsaturated aldehydes was developed. This strategy allowed the construction of structurally novel spiro N-heterocyclic oxindole derivatives in good yields (up to 91%) and good to excellent enantioselectivities (up to >99% ee), albeit with modest diastereoselectivities (up to 3.1:1 dr). 相似文献
859.
Fan Liao Hanxuan Wang Yuankun Dao Kai Yuan Jiazhen Lu Jie Shi Ying Han Suwei Dong Lin Lu 《中国化学快报》2021,32(4):1575-1579
We describe an application of carrier protein-free strategy in constructing a fully synthetic methamphetamine (METH) vaccine that contains three components: Toll-like receptor 2 ligand, Th2 epitope, and METH hapten. The immunological evaluation in mice revealed high titers of METH-specific antibodies induced by the construct and the activation of humoral immunity that would be beneficial for neutralization and clearance of the METH molecule. Behavioral experiments indicated that the synthetic vaccine attenuated the acquisition of METH-induced conditioned place preference and inhibited the initiation and expression of METH-induced locomotor sensitization. These results demonstrate that the lipopeptide-based vaccine has invoked an immune response and showed the potential of preventing the rewarding and psychoactive effects of METH. 相似文献
860.
硝酸根离子介质中偏钛酸钡的水热合成 总被引:1,自引:0,他引:1
以硝酸和钛酸四丁酯为原料,在240℃的碱液中成功地制备了四方相BaTiO3运用XRD、DSC和IR等技术碱度、硝酸根离子、钛源活性、填充度等因素对BaTiO3形成、粒度和物相的作用,KOH最适宜浓度为1.0mol/L,碱液中BaTiO3是BaO-TiO2体系中最稳定的物相,硝酸根离子参与了BaTiO3晶体的成核和生长,钛源的高活性和高填充度有利于四方BaTiO3的形成。 相似文献