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101.
运用B3LYP/6-311++G**(RLC ECP)方法研究[UO_2(Uracil)j(H_2O)k]~(2+)(Uijk,i为尿嘧啶6种异构体代号,j+k=5)配位体系的几何结构、振动光谱、结合能等性质,并用极化连续介质模型(PCM)考察了溶剂化效应。结果表明,在U1jk体系中,随着尿嘧啶配体数目的逐渐增加,U-Ouracil配位键和U=O键的键长逐渐伸长,水溶液中U=O键的伸缩振动频率逐渐减小,配离子的总结合能呈增加趋势,且气相中的线性拟合效果较好。在Ui14体系中,U-Ouracil的键长与U-OH_2的键长整体成负相关,与U=O键的伸缩振动频率成正相关,结合能最大的配离子并不是由能量最低的尿嘧啶异构体生成的。电子密度拓扑分析表明U-Ouracil键和U-OH_2键具有离子键性质。原子电荷分析揭示在配位过程中是由配体片段向铀酰发生了电子转移,且尿嘧啶的电荷转移量与该配体数目成负相关,其中Ur6异构体向铀酰离子转移电子数最多。  相似文献   
102.
103.
Palecek E  Fojta M 《Talanta》2007,74(3):276-290
Magnetic beads (MBs) are versatile tools in the separation of nucleic acids, proteins and other biomacromolecules, their complexes and cells. In this article recent application of MBs in electrochemical biosensing and particularly in the development of DNA hybridization sensors is reviewed. In these sensors MBs serve not only for separation but also as a platform for optimized DNA hybridization. A hybridization event is detected separately at another surface, which is an electrode. The detection is based either on the intrinsic DNA electroactivity or on various kinds of DNA labeling, including chemical modification, enzyme tags, nanoparticles, electroactive beads, etc., greatly amplifying the signals measured. In addition to DNA hybridization, other kinds of biosensing in combination with MBs, such as DNA-protein interactions, are reviewed.  相似文献   
104.
脲嘧啶类化合物具有显著的除草活性. 设计并合成了10个未见文献报道的N-[2,4-二取代-5-(3-甲基-2,6-二氧-4-三氟甲基-1,2,3,6-四氢嘧啶-1-基)苯基]酰亚胺类化合物, 其化学结构经1H NMR, IR, HPLC/MS和元素分析表征. 初步生物活性测定结果表明, 该类化合物具有一定的除草活性, 如9a, 9b, 9c, 9f, 9g和9h在有效成分75 g/hm2剂量下, 茎叶处理对苘麻(Abutilon theophrasti Medic )、刺苋(Amaranthus spinosus)等双子叶杂草的抑制率达90%以上.  相似文献   
105.
Complexes formed between metal dications, the conjugate base of uracil, and uracil are investigated by sustained off‐resonance irradiation collision‐induced dissociation (SORI‐CID) in a Fourier transform ion cyclotron resonance (FTICR) mass spectrometer. Positive‐ion electrospray spectra show that [M(Ura?H)(Ura)]+ (M=Zn, Cu, Ni, Co, Fe, Mn, Cd, Pd, Mg, Ca, Sr, Ba, or Pb) is the most abundant ion even at low concentrations of uracil. SORI‐CID experiments show that the main primary decomposition pathway for all [M(Ura?H)(Ura)]+, except where M=Ca, Sr, Ba, or Pb, is the loss of HNCO. Under the same SORI‐CID conditions, when M is Ca, Sr, Ba, or Pb, [M(Ura?H)(Ura)]+ are shown to lose a molecule of uracil. Similar results were observed under infrared multiple‐photon dissociation excitation conditions, except that [Ca(Ura?H)(Ura)]+ was found to lose HNCO as the primary fragmentation product. The binding energies between neutral uracil and [M(Ura?H)]+ (M=Zn, Cu, Ni, Fe, Cd, Pd ,Mg, Ca, Sr Ba, or Pb) are calculated by means of electronic‐structure calculations. The differences in the uracil binding energies between complexes which lose uracil and those which lose HNCO are consistent with the experimentally observed differences in fragmentation pathways. A size dependence in the binding energies suggests that the interaction between uracil and [M(Ura?H)]+ is ion–dipole complexation and the experimental evidence presented supports this.  相似文献   
106.
《Analytical letters》2012,45(13):2562-2573
Abstract

A sensing system for uracil was constituted by using lanthanum hydroxide nanowires (LNW) as a modifier to obtain LNW modified carbon paste electrode (LNW/CPE) and by introducing copper(II) ion into supporting electrolyte to transform electroinactive uracil to electroactive uracil‐Cu(II) complex. The voltammetric behaviors of uracil in the presence of Cu(II) ion at LNW/CPE were investigated. A reduction peak of the uracil‐Cu(II) complex at ?0.18 V was the two‐electron reduction of Cu(II) ion in the uracil‐Cu(II) complex; while a new oxidation peak at 0.22 V was the one‐electron oxidation of the uracil‐Cu(I) complex. Additionally, the voltammetric responses of all the complexes at LNW/CPE were more sensitive than that at carbon and multiwall carbon nanotube paste electrodes, which resulted from both the large surface effect of LNW and the chemical coordination of uracil with La(III) ion in LNW. With the sensitive oxidation peak of the uracil‐Cu(I) complex at LNW/CPE, a linear range of 4.0×10?9?3.0×10?8 mol/l for uracil was obtained along with a detection limit of 2.0×10?10 mol/l. The proposed system was evaluated by the determination of uracil derivatives, anticancer drug 5‐flurouracil, in pharmaceutical preparations.  相似文献   
107.
Volumetric, viscometric and ultrasonic studies of uracil in an aqueous urea solution in varying concentration of 2, 3 and 5?M have been carried out at 298, 308 and 318?K. The uracil concentration in the aqueous urea solution varies from 0.05% to 0.4%. Density (ρ), viscosity (η) and sound speed (u) have been measured. The experimental data are used for computing various thermodynamic and acoustic parameters, namely apparent molar volume, isentropic compressibility, apparent isentropic compressibility, relative association, intermolecular free length, acoustic impedance, viscous relaxation time, hydration number, Gibb's free energy, classical absorption coefficient of the solution and viscosity data have been further analysed in the light of Masson's equation and Jones–Dole's equations, respectively. The results have been discussed in terms of solute–solute and solute–solvent interaction and the structural changes of the solutes in solutions. The effect of variation of temperature on these interactions has also been investigated.  相似文献   
108.
综合分析了尿嘧啶在银电极表面不同条件的表面增强激光Raman光谱(SERS),利用扩展的Hückel分子轨道法(EHMO)对尿嘧啶分子在银电极表面的吸附状态进行了计算.结果表明:最稳定的吸附构型能较成功地阐明尿嘧啶吸附在银表面的SERS谱;尿嘧啶在银表面主要是以N(3)去质子化的形式吸附;尿嘧啶在银表面的吸附取向是由其浓度和银表面电位共同决定;在较低浓度和较高电位时,N(3)去质子化的尿嘧啶离子在银表面主要是通过C(2)及整个嘧啶环上的π电子体系与银表面的相互作用平躺地吸附;在较高浓度和较低电位时,吸附取向发生改变,即主要是通过N(3)与O(10)以及N(3)与O(8)垂直地共同吸附在银表面上  相似文献   
109.
本文利用数理统计的最优化方法,对半微分阴极溶出电分析法测定尿嘧啶的最佳实验条件进行了选择。采用正交试验法对底液浓度、pH等七个因素进行了综合考察。所得各项指标均由计算机进行处理,进行直观分析和方差分析,并绘制各因素与试验指标的关系趋势图,取得了令人满意的效果和最优化的实验条件。本方法不仅比常规的实验方法节省大量时间和人力物力,而且起到综合考察各影响因素的目的。  相似文献   
110.
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