نتایج جستجو برای: criii

تعداد نتایج: 74  

Journal: :Coordination Chemistry Reviews 2021

Although less famous than low-spin trivalent cobalt found in [CoIII(NH3)6?xClx]Cl3?x (x ? 3), which was exploited by Alfred Werner during the early part of 20th century for establishing basic rules coordination chemistry, related chromium complexes exhibit comparable kinetic inertness, a rare property along 3d-transition series. The associated slow isomerisation processes are compatible with is...

1996
Evangelos K. Paleologos Spyros I. Lafis Stella M. Tzouwara-Karayanni Miltiades I. Karayannis

A relatively simple, sensitive, selective, automatic fluorimetric method for the simultaneous determination of chromium(III) and chromium(VI) by flow injection analysis (FIA) was developed. The method is based on the selective oxidation of the non-fluorescing reagent 2-(a-pyridyl)thioquinaldinamide (PTQA), which with Cr yields an intensely fluorescent product (lex = 360 nm; lem = 500 nm). Chrom...

2016
Dohyun Moon Jong-Ha Choi

In the asymmetric unit of the title compound, [CrCl2(C10H24N4)][Cr(C2O4)(C10H24N4)](ClO4)2 (C10H24N4 = 1,4,8,11-tetra-aza-cyclo-tetra-decane, cyclam; C2O4 = oxalate, ox), there are two independent halves of the [CrCl2(cyclam)]+ and [Cr(ox)(cyclam)]+ cations, and one perchlorate anion. In the complex cations, which are completed by application of twofold rotation symmetry, the CrIII ions are coo...

2017
Dohyun Moon Masahiro Takase Takashiro Akitsu Jong-Ha Choi

The structure of the complex salt, cis-[Cr(NCS)2(cyclam)]2[Cr2O7]·H2O (cyclam = 1,4,8,11-tetra-aza-cyclo-tetra-decane, C10H24N4), has been determined from synchrotron data. The asymmetric unit comprises of one [Cr(NCS)2(cyclam)]+ cation, one half of a Cr2O72- anion (completed by inversion symmetry) and one half of a water mol-ecule (completed by twofold rotation symmetry). The CrIII ion is coor...

2002
A. T. J. Klein F. Rösch H. H. Coenen S. M. Qaim

In connection with the production of 46.2 min Mn via the Cr(d, n)-process, several separation techniques such as ion exchange chromatography, solid phase extraction, liquid–liquid extraction and co-precipitation have been investigated; the aim was to separate no-carrier-added radiomanganese from the bulk target chromium. Among the separation systems ∗MnII/CrIII , ∗MnII/CrVI and ∗MnIV/CrVI, the ...

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