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排序方式: 共有211条查询结果,搜索用时 31 毫秒
1.
本文报道采用碘离子选择电极,系统研究了锆于BO_3~--I~-反应中的定量催化特性,建立了催化电势动力学间接测痕量锆的方法。结果表明,本法专属性较高,55种阴、阳离子均不干扰测锆。  相似文献   
2.
《Analytica chimica acta》2002,459(2):229-234
The ligand 1,4,8-tri(n-octyl)-1,4,8,11-tetraazacyclotetradecane (L1) containing pendant octyl groups has been synthesised. L1 is a tetraazamacrocycle derived from the well-known cyclam unit, and the Ni2+ and Co2+ complexes, [Ni(L1)]2+ and [Co(L1)]2+, have been isolated and characterised. The ability of the nickel(II) and cobalt(II) complexes to act as anion receptors has been studied by using them as ionophores in membrane-based ion-selective electrodes (ISEs). The PVC membrane containing the complex [Ni(L1)]2+ and 2-nitrophenyloctylether as plasticizer shows a Nernstian response against iodide in a concentration range from 1×10−1 to 4×10−5 M I with a detection limit of 1.6×10−5 M I and a slope of 58.6 mV/pI at pH 7 (25 °C). In comparison, the electrode containing [Co(L1)]2+ as ionophore gave a sub-Nernstian slope and a low lifetime. A comparison between the iodide-selective electrode containing [Ni(L1)]2+ and other reported iodide-selective electrodes is also reported.  相似文献   
3.
陈庆云  裘再明 《有机化学》1987,7(5):364-369
2-卤四氟碘乙烷[1,XCF_2CF_2I,(X=Cl或l)]能与多种亲核试剂按自由基或亲卤机理反应。1在没有溶剂时,于室温下,可以和胺作用迅速形成分子络合物。本文则进一步报道1与含氮亲核试剂在各种溶剂中反应的结果。  相似文献   
4.
碘溴化银乳剂薄片颗粒的潜影分散与碘离子在颗粒中的分布有关。本文用交叉光楔曝光技术测定了由次潜影造成的潜影分散,并根据所测出的潜影分散度和乳剂的表面感光度,对内、表敏的分布作了分析。结果表明,碘离子分布在颗粒边缘的乳剂,其表面潜影分散度要比碘离子均匀分布的颗粒更甚,后者且表现出内、表敏度竞争的现象。  相似文献   
5.
双臂套索冠醚PVC膜碘离子选择电极   总被引:2,自引:2,他引:2  
研究了两种新型双臂套索冠醚1,10-二(5-氯-8-羟基喹啉-7-亚甲基)-1,10-二氮杂-4,7,16-三氧杂-13,19-二硫杂环二十一烷(Ⅰ)和1,13-二(5-甲基-8-羟基喹啉-7-亚甲基)-1,13-二氮杂-4,7,10-三氧杂-16,19-二硫杂环二十一烷(Ⅱ)为载体的PVC膜电极的响应行为;实验结果表明,两电极均显示阴离子响 应,其中对碘离子具有优良的能斯特电位响应性能,线性范围为10^-5-10^-1mol/L,斜率分别为-59.1mV/pcI-和-57.6mV/pcI-;电极具有读数稳定,重复性好,PH值范围宽等优点;将该电极用于药品中碘含量的测定,其结果与药典法一致。  相似文献   
6.
Masadome T  Sonoda R  Asano Y 《Talanta》2000,52(6):1123-1130
A potentiometric flow injection determination method for iodide ion in a photographic developing solution was proposed by utilizing a flow-through type iodide ion-selective electrode detector. The sensing membrane of the electrode was Ag2S–AgI membrane. The response of the electrode detector as a peak-shape signal was obtained for injected iodide ion in a photographic developing solution. A linear relationship in the subnernstian zone was found to exist between peak height and the concentration of the iodide ion in a photographic developing solution in a concentration range from 0 to 6.0×10−5 mol l−1. The relative standard deviation for ten injections of 2×10−5 mol l−1 iodide ion in a photographic developing solution was 0.96% and the sampling rate was approximately 12–13 samples h−1. The iodide ion could be determined under coexisting of an organic reducing reagent and inorganic electrolytes of high concentration in a photographic developing solution sample solution by the present method.  相似文献   
7.
Bromide and iodide ions were determined simultaneously by capillary isotachophoresis using an aqueous electrolyte system; the separation principle was based on the ion-pairing equilibria between tetradecyldimethylbenzylammonium ion and these anions in the leading electrolyte. The interaction between iodide ion and tetradecyldimethylbenzylammonium ion was stronger than that for bromide ion. Thus complete separation of bromide and iodide ions could be obtained by using a leading electrolyte containing 1.5 mM tetradecyldimethylbenzylammonium ion. The pH of the leading electrolyte was adjusted to 5.0. The relative standard deviations of the zone length for bromide and iodide ions were 1.1 and 1.2%, respectively, when mixture of 3.0 mM of these ions was analysed. A 150-μl volume could be injected for the simultaneous determination of low concentrations of bromide and iodide ions.  相似文献   
8.
This work describes development of a flow injection (FI) system for determination of iodide, based on the chemiluminescence (CL) reaction between iodine and luminol. Iodide in the sample zone is oxidized to iodine. Employment of a gas-diffusion (GD) unit allows for selective detection of the generated CL (425 nm). Preliminary results showed for concentrations of less than 2 mg L−1, that signals were irreproducible and that the calibration was not linear.In order to solve these problems, a method of ‘membrane conditioning’ was investigated, in which iodide stream was continuously merged with oxidant to generate I2 that conditioned the GD membrane and tubing. This minimized surface interaction between the active surface and the I2 generated from the samples, thus improving both precision and sensitivity. By employing membrane conditioning, it has been possible to reliably detect concentrations down to 0.1 mg L−1.At the optimized condition, an excellent linear calibration (r2 = 0.999) was obtained from 0.1 to 1.0 mg L−1. The method was successfully applied to determine iodide in some pharmaceutical products such as potassium iodide tablets and a liquid patent medicine. However, for vitamin tablets, ascorbic acid was found to interfere seriously by causing a negative signal.  相似文献   
9.
A novel membrane sensor for selective monitoring of iodide, consisting of a triiodide‐ketoconazole ion pair complex dispersed in a PVC matrix, plasticized with a mixture of 2‐nitrophenyl octyl ether and dioctylphtalate with unique selectivity toward iodide ions, is described. The influence of membrane composition, pH of test solution and foreign ions on the electrode performance were investigated. The optimized membrane demonstrates a near‐Nernstian response for iodide ions over a wide linear range from 1.0 × 10?2 to 1.0 × 10?5 M, at 25 ± 1 °C. The electrode could be used over a wide pH range 3–10 and has the advantages of high selectivity, fast response time and good lifetime (over 4 months). It was successfully used as indicator electrode in potentiometric titrations and direct potentiometric assay of iodide ions.  相似文献   
10.
CS[Er6C]I12 and cs2Lu[Lu6C]CI18: Examples for Quaternary Reduced Halides of the Lanthanides with Isolated “Clusters” Cs[Er6C]I12 and Cs2Lu[Lu6C]Cl18 were obtained as byproducts through metallothermic reductions of ErI3 and LuCl, with cesium in the presence of carbon in sealed tantalum containers at temperatures ranging from 700 to 940 °C. Cs2Lu[Lu6C]Cl18 (isostructural with Cs2Zr[Zr6H]Cl18, R 3 , a = 981.7 pm, c = 2723.2 pm, Z = 3, R = 0.082, R, = 0.053) contains octahedral [Lu6C] clusters which are slightly compressed along the threefold axis and edge-bridged by twelve chloride anions to form [Lu6C]Cl12 units. Six additional Cl in exo positions of the cluster provide octahedral coordination for the seventh Lu3+. Cs+ occupies anticuboctahedral interstices within the Cl+ layers as a part of the (hexagonal) closest packed arrangement. Cs[Er6C]I12 (trigonal, R 3, a = 1112.0pm, c = 2063.8pm, Z = 3, R = 0.094, R, = 0.068) exhibits [Er6C]I12 units as well and shows the structural framework of Sc[Sc6N]Cl12. Instead of Sc3+ in octahedral holes, cesium occupies a regular iodide position within the ccp sheets forming [CsI3] layers. Both halides are compared with other compounds of the lanthanides containing isolated [M6X12] clusters. The extreme electron deficiency is discussed.  相似文献   
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