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((1,1,2,2-tetracyano-1,2-ethanediyl)bis[imino(cyanomethylene)])bis[cyanamide] is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

173594-13-3

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173594-13-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 173594-13-3 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,3,5,9 and 4 respectively; the second part has 2 digits, 1 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 173594-13:
(8*1)+(7*7)+(6*3)+(5*5)+(4*9)+(3*4)+(2*1)+(1*3)=153
153 % 10 = 3
So 173594-13-3 is a valid CAS Registry Number.

173594-13-3Upstream product

173594-13-3Downstream Products

173594-13-3Relevant academic research and scientific papers

Tetracyanomanganate(II) and its salts of divalent first-row transition metal ions

Manson,Buschmann,Miller

, p. 1926 - 1935 (2001)

The first known paramagnetic, tetrahedral cyanide complex, [MnII(CN)4]2-, is formed by the photoinduced decomposition of [MnIV(CN)6]2- in nonaqueous solutions or by thermal decomposition in the solid state. In acetonitrile or dichloromethane, photoexcitation into the ligand-to-metal charge transfer band (λmax = 25 700 cm-1, ε = 3700 cm-1 M-1) causes the homolytic cleavage of cyanide radicals and reduction of MnIV. Free cyanide in dichloromethane leads to the isolation of polycyanide oligomers such as [C12N12]2- and [C4N4]-, which was crystallographically characterized as the PPN+ salt C40H30N5P2: monoclinic space group = 12/a, a = 18.6314(2) A, b = 9.1926(1) A, c = 20.8006(1), β = 106.176(2)°, Z = 4]. In the solid state MnIV-CN bond homolysis is thermally activated above 122 °C, according to differential scanning calorimetry measurements, leading to the reductive elimination of cyanogen. The [MnII(CN)4]2- ion has a dynamic solution behavior, as evidenced by its concentration-dependent electronic and electron paramagnetic spectra, that can be attributed to aggregation of the coordinatively and electronically unsaturated (four-coordinate, 13-electron) metal center. Due to dynamics and lability of [MnII(CN)4]2- in solution, its reaction with divalent first-row transition metal cations leads to the formation of lattice compounds with both tetrahedral and square planar local coordination geometries of the metal ions and multiple structural and cyano-linkage isomers. α-MnII[MnII(CN)4] has an interpenetrating sphalerite- or diamond-like network structure with a unit cell parameter of a = 6.123 A (P43m space group) while a β-phase of this material has a noninterpenetrating disordered lattice containing tetrahedral [MnII(CN)4]2-. Linkage isomerization or cyanide abstraction during formation results in α-MnII[CoII(CN)4] and MnII[NiII(CN)4] lattice compounds, both containing square planar tetracyanometalate centers. α-MnII[CoII(CN)4] is irreversibly transformed to its β-phase in the solid state by heating to 135 °C, which causes a geometric isomerization of [CoII(CN)4]2- from square planar (vCN = 2114 cm-1, S = 1/2) to tetrahedral (vCN = 2158 cm-1, S = 3/2) as evidenced by infrared and magnetic susceptibility measurements. MnII[NiII(CN)4] is the only phase formed with NiII due to the high thermodynamic stability of square planar [NiII(CN)4]2-.

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