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Technetium systems

In the octachloro technetium system, by contrast, the paramagnetic [Tc2Cl8] is the most readily obtained species. The Tc has a formal oxidation state of - -2.5 with a rf(Tc-Tc)... [Pg.1058]

It is reported that mild carbon steels may be effectively protected by as little as 55 ppm of KTc04 in aerated distilled water at temperatures up to 250oC. This corrosion protection is limited to closed systems, since technetium is radioative and must be confined. 9sTc has a specific activity of 6.2 X lOs Bq/g. Activity of this level must not be allowed to spread. 99Tc is a contamination hazard and should be handled in a glove box. [Pg.107]

Technetium-99m teboroxime is a myocardial imaging agent and is excreted primarily by the hepatobiliary system. It is rapidly taken up by the myocardium and mosdy washes out within 30 minutes. Imaging protocols are performed immediately after injection. The product is a lyopbili ed mixture of boronic acid, dioxine, and other excipients, and the agent is formed with a beating step. [Pg.484]

Technetium-99m albumin coUoid is cleared by the reticuloendothehal (RE) cells and is used for visualization of the RE system of the Hver, spleen, and bone marrow. The product is formed by the addition of up to 2.8 GBq (75 mCi) of Tc pertechnetate. [Pg.484]

Ajayaghosh A, George SJ, Schenning APHJ (2005) Hydrogen-Bonded Assemblies of Dyes and Extended jr-Conjugated Systems. 258 83-118 Akai S, Kita Y (2007) Recent Advances in Pummerer Reactions. 274-. 35-76 Albert M, Fensterbank L, l.acote E, Malacria M (2006) Tandem Radical Reactions. 264 1-62 Alberto R (2005) New Organometallic Technetium Complexes for Radiopharmaceutical Imaging. 252 1-44... [Pg.256]

Liquid scintillation counting has been used frequently for the measurement of environmental technetium. The specimens to be analyzed are treated by chemical procedures to obtain a technetium-bearing sample solution, which is mixed with a cocktail for scintillation counting. A low background scintillation counter with an anticoincidence system can be used for high precision measurements at a detection limit of 1-25 mBq. [Pg.24]

ICP-MS (inductively coupled plasma mass spectrometry) is frequently used for determining ultratrace amounts of technetium [9]. In spite of the high cost of the equipment, this detection method is far superior to other radiometric methods as regards sensitivity. When a double focussing high-resolution system is used (HR-ICP-MS) and an ultrasonic nebulizer is introduced [10], the detection limit is in the order 0.002 mBq. The ICP-MS method has been successfully applied to the determination of environmental "Tc as well as to other long-lived radionuclides of neptunium and plutonium in the environment. [Pg.25]

It should be noted that the above classification system of technetium cluster compounds is not the only possible one. In section 4 another classification is described, which is based on thermal stability and the mechanism of thermal decomposition. Section 2.2 is concerned with the classification based on methods of synthesizing cluster compounds. The classifications based on specific properties of clusters do not at all belittle the advantages of the basic structural classification they broaden the field of application of the latter, because for a better understanding and explanation of any chemical, physico-chemical and physical properties it is necessary to deal directly or indirectly with the molecular and/or electronic structures of the clusters. [Pg.193]

Tc(IV) [or Tc(VII)] and Tc. An analogous tendency was observed for these clusters in aqueous solutions [11,80,87]. Polynuclear technetium clusters decompose with the formation of metallic technetium, i.e. the system of M-M bonds in this case appears to be more stable than the bonding of technetium with ligands. [Pg.232]

The most fundamental approach to assessing lability of complexes is by determination of the rate of isotopic exchange reactions. In the technetium-complex systems, no study of the exchange reaction on the central metal ion has been reported, but several reports have been published on isotopic exchange by ligand substitution. [Pg.256]

An interesting investigation of a ligand exchange reaction for Tc(III) complex has been reported in the system of tris(acetylacetonato)technetium(III)... [Pg.258]

In inert systems such as technetium and rhenium, ligand substitution reactions-including solvolysis-proceed under virtually irreversible conditions. Thus, the nature of the reaction center, the nature of the leaving group, and the nature and position of the other ligands in the complex affect the rates and activation parameters in a complicated manner. Most substitution reactions take place via interchange mechanisms. This is not too surprising when the solvent is water - or water-like - and where, in order to compete with the solvent,... [Pg.272]

Technetium and rhenium coordination chemistry has actively developed in order to design materials as potential radiopharmaceuticals diagnostic imaging agents for technetium and potential therapeutic reagents based on rhenium. Continuous efforts are still applied to find efficient chelating systems for the [MO]3+ cores (M=Tc, Re). Thus several complexes with monodentate and... [Pg.46]


See other pages where Technetium systems is mentioned: [Pg.1058]    [Pg.1002]    [Pg.1002]    [Pg.7147]    [Pg.1058]    [Pg.1002]    [Pg.1002]    [Pg.7147]    [Pg.650]    [Pg.477]    [Pg.138]    [Pg.143]    [Pg.156]    [Pg.245]    [Pg.29]    [Pg.42]    [Pg.102]    [Pg.103]    [Pg.126]    [Pg.127]    [Pg.156]    [Pg.224]    [Pg.225]    [Pg.225]    [Pg.242]    [Pg.242]    [Pg.247]    [Pg.247]    [Pg.248]    [Pg.249]    [Pg.95]    [Pg.97]    [Pg.100]    [Pg.110]    [Pg.124]    [Pg.54]    [Pg.56]    [Pg.146]    [Pg.92]    [Pg.100]    [Pg.127]   
See also in sourсe #XX -- [ Pg.525 ]




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