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991.
制备了核-壳结构的TiO2@Pt复合纳米颗粒,并修饰于恒电位沉积的普鲁士蓝-壳聚糖(PB-CS)杂化膜表面,以固定葡萄糖氧化酶。由于TiO2@Pt复合纳米颗粒的引入显著增大了传感器的导电性和酶的固载量,同时CS的掺杂,防止了PB的泄露,使得传感器对葡萄糖具有较好的催化作用。该传感器在1.2×10-6~1.1×10-3mol·L-1范围内,响应电流与葡萄糖浓度呈良好的线性,相关系数(r)为0.998 6,检出限(S/N=3)达到4.0×10-7mol·L-1,灵敏度为13.31 mA·mol·L-1·cm-2。对0.3 mmol·L-1的葡萄糖标准溶液连续检测5次,其相对标准偏差为3.8%。 相似文献
992.
Structural modifications of 3-OH in the glucose moiety of dapagliflozin(1), an approved potent sodium-dependent glucose transporter 2(SGLT2) inhibitor, led to 3-oxodapagliflozin(16), a highly potent and more selective SGLT2 inhibitor[IC50(hSGLT1)/IC50(hSGLT2)=2851 for compound 16 vs. 843 for compound 1]. 3-Oxodapagliflozin(16) exhibited in vitro(IC50=1.0nmol/L against hSGLT2 for compound 16 vs. 1.3 nmol/L for compound 1) and in vivo activities comparable to those of dapagliflozin(1). The bioactivities of 3-oxodapagliflozin (16) warrant its further evaluation as a promising SGLT2 inhibitor for the treatment of type 2 diabetes. 相似文献
993.
目的研究3种改性活性炭对菜地、河流底泥、荷花底泥镉吸附性的影响。方法对活性炭进行酸改性、碱改性和氧化改性,采用双硫腙分光光度法测定镉含量。结果对实验土样,最佳活性炭添加量为0.025 g/g。随着初始镉含量的升高,土壤对镉的吸附量不断增大。结论 3种改性活性炭相比普通活性炭对湿地土壤的镉吸附量均有不同程度的提升,荷花底泥中,酸性、氧化改性活性炭相比普通活性炭,吸附效果提高7.7%,8.3%,吸附效果提升显著。 相似文献
994.
采用原位红外光谱研究了在具有短程有序Ce-O-Ti结构的非晶Ce-Ti氧化物上NH3选择性催化还原(SCR) NOx反应. 在反应条件下,催化剂表面主要被NH3吸附物种覆盖,而检测不到NOx吸附物种. 经测定,NO的反应级数为0.5-0.6,表明Langmuir-Hinshelwood机理和Eley-Rideal机理同时存在. 可能的机理是NH3吸附物种和弱吸附的NOx反应,生成NHyNO3 (y = 0-4)活性中间物种,并通过GAUSSIAN计算和原位红外结果证实了它们的存在. Ce-O-Ti结构中Ce与Ti之间表现出原子尺度的相互作用,所以在SCR反应的活性温度窗口下,催化剂的氧化还原活性提高. 相似文献
995.
哈茨木霉CGMCC 2979生物转化栀子中的京尼平苷制备京尼平 总被引:1,自引:0,他引:1
采用微生物直接转化药材的方法,将栀子中的京尼平苷转化为京尼平,无需糖苷酶和京尼平苷的制备. 在培养温度为30 ℃,pH 6.1以及栀子载量为80 g/L的条件下,48 h京尼平苷的转化率为97.8%. 转化后的京尼平通过XAD-16N大孔树脂偶联硅胶层析的方法,制备得到纯度大于95%的京尼平,收率为62.3%. 在催化、转化机制研究中,从哈茨木霉CGMCC2979的发酵液中分离得到了分子量为74.4 kDa的京尼平苷β-葡萄糖苷酶,该酶最优催化条件为50 ℃和pH 4.0-5.0. Km和Vmax分别为3.6 mmol/L和775 μmol/h/mg蛋白. 本文提供了一种简便、高效制备京尼平的新方法. 相似文献
996.
The title compound(zifaxaban 2, C20H16ClN3O4 S, Mr = 429.87) was synthesized and its crystal structure was determined by single-crystal X-ray diffraction. Zifaxaban crystallizes in monoclinic, space group P21 with a = 5.7900(12), b = 13.086(3), c = 12.889(3) A, β = 100.86(3)°, V = 959.1(3) A3, Z = 2, Dc = 1.489 g/cm3, F(000) = 444, μ = 0.342 mm-1, the final R = 0.0320 and wR = 0.0640 for 2717 observed reflections(I 2σ(I)). The absolute configuration of the stereogenic center in the title compound was confirmed to be S by single-crystal X-ray diffraction. Four existing intermolecular hydrogen bonds help to stabilize the lattice and the molecule in the lattice to adopt an L-shape conformation. Zifaxaban was slightly more active than rivaroxaban 1 in in vitro assay against human FXa and therefore is promising as a drug candidate. 相似文献
997.
The complex [Cd(bbb)Cl2]·DMF·H2O, where bbb is 2-(2-(1H-benzo[d]imidazol-2-yl)benzyl)-1H-benzo[d]imidazole, was synthesized and characterized by X-ray single-crystal structure analyses. For the complex: C24H25Cl2CdN5O2, Mr = 598.77, crystal system, triclinic, space group P1, a = 9.9878(12), b = 10.0008(12), c = 13.2217(15) , α = 80.674(2), β = 72.158(2), γ = 86.776(2)°, V = 1240.5(3) 3, Z = 2, Dc = 1.598 g/cm3, λ = 0.71073, μ(MoKα) = 1.127 mm–1, F(000) = 600, S = 1.04, R = 0.0905 and wR = 0.3088 for 4805 observed reflections with I 2σ(I). It is a neutral complex. The distorted tetrahedral geometry of cadmium ion is coordinated by two nitrogen atoms of ligand and two chloride ions. The complex emits blue green luminescence with emission peaks at 480 nm in DMF solution. 相似文献
998.
Zongchao Jia Ying Liu Maurycy Daroch Shu Geng Jay J. Cheng 《Applied biochemistry and biotechnology》2014,173(7):1667-1679
This article presents a study on screening of microalgal strains from the Peking University Algae Collection and heterotrophic cultivation for biodiesel production of a selected microalgal strain. Among 89 strains, only five were capable of growing under heterotrophic conditions in liquid cultures and Chlorella sp. PKUAC 102 was found the best for the production of heterotrophic algal biodiesel. Composition of the growth medium was optimised using response surface methodology and optimised growth conditions were successfully used for cultivation of the strain in a fermentor. Conversion of algal lipids to fatty acid methyl esters (FAMEs) showed that the lipid profile of the heterotrophically cultivated Chlorella sp. PKUAC 102 contains fatty acids suitable for biodiesel production. 相似文献
999.
Ya Zhang Aixue Dong Qiang Wang Xuerong Fan Artur Cavaco-Paulo Ying Zhang 《Applied biochemistry and biotechnology》2014,174(2):820-831
The high-redox-potential catalyst laccase, isolated from Aspergillus, was first used as a biocatalyst in the oxidative polymerization of water-soluble conductive polyaniline, and then conductive cotton was prepared by in situ polymerization under the same conditions. The polymerization of aniline was performed in a water dispersion of sodium dodecylbenzenesulfonate (SDBS) micellar solution with atmospheric oxygen serving as the oxidizing agent. This method is ecologically clean and permits a greater degree of control over the kinetics of the reaction. The conditions for polyaniline synthesis were optimized. Characterizations of the conducting polyaniline and cotton were carried out using Fourier transform infrared spectroscopy, UV–vis spectroscopy, cyclic voltammetry, the fabric induction electrostatic tester, and the far-field EMC shielding effectiveness test fixture. 相似文献
1000.
Kai Li Xiaolong Tang Honghong Yi Ping Ning Ying Xiang Chi Wang Xianmang Xu 《Research on Chemical Intermediates》2014,40(1):169-177
Manganese–cobalt–cerium oxide (Mn–Co–Ce–Ox) catalysts were synthesized by the co-precipitation method and tested for activity in low-temperature catalytic oxidation of NO in the presence of excess O2. With the best Mn–Co–Ce mixed-oxide catalyst, approximately 80 % NO conversion was achieved at 150 °C and a space velocity of 35,000 h?1. The effect of reaction conditions (reaction temperature, volume fractions of NO and O2, gas hourly space velocity (GHSV), and catalyst stability) was investigated. The optimum reaction temperature was 150 °C. Increasing the O2 content above 3 % results in almost no improvement of NO oxidation. This catalyst enables highly effective removal of NO within a wide range of GHSV. Furthermore, the stability of the Me–Co–Ce–Ox catalyst was excellent; no noticeable decrease of NO conversion was observed in 40 h. 相似文献