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Tris(1,10-phenanthroline)iron(II) triflate is a coordination complex consisting of an iron(II) ion coordinated to three 1,10-phenanthroline ligands and a trifluoromethanesulfonate (triflate) counterion. tris(1,10-phenanthroline)iron(II) triflate is widely used in various chemical reactions, particularly in catalysis and as a redox-active species. The 1,10-phenanthroline ligands form a strong π-bonding interaction with the iron(II) center, which enhances the stability and reactivity of the complex. The triflate counterion provides a non-coordinating anion, which helps to maintain the solubility and stability of the complex in various solvents. Overall, tris(1,10-phenanthroline)iron(II) triflate is a versatile and important chemical species in the field of coordination chemistry and catalysis.

85152-70-1

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85152-70-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 85152-70-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 8,5,1,5 and 2 respectively; the second part has 2 digits, 7 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 85152-70:
(7*8)+(6*5)+(5*1)+(4*5)+(3*2)+(2*7)+(1*0)=131
131 % 10 = 1
So 85152-70-1 is a valid CAS Registry Number.

85152-70-1Upstream product

85152-70-1Downstream Products

85152-70-1Relevant academic research and scientific papers

Selective Formation of S4-and T-Symmetric Supramolecular Tetrahedral Cages and Helicates in Polar Media Assembled via Cooperative Action of Coordination and Hydrogen Bonds

Shi, Qixun,Zhou, Xiaohong,Yuan, Wei,Su, Xiaoshi,Neni?kis, Algirdas,Wei, Xin,Taujenis, Lukas,Snarskis, Gustautas,Ward, Jas S.,Rissanen, Kari,De Mendoza, Javier,Orentas, Edvinas

, p. 3658 - 3670 (2020)

We report on the synthesis and self-assembly study of novel supramolecular monomers encompassing quadruple hydrogen-bonding motifs and metal-coordinating 2,2′-bipyridine units. When mixed with metal ions such as Fe2+ or Zn2+, the tetrahedron cage complexes are formed in quantitative yields and full diastereoselectivity, even in highly polar acetonitrile or methanol solvents. The symmetry of the complexes obtained has been shown to depend critically on the flexibility of the ligand. Restriction of the rotation of the hydrogen-bonding unit with respect to the metal-coordinating site results in a T-symmetric cage, whereas introducing flexibility either through a methylene linker or rotating benzene ring allows the formation of S4-symmetric cages with self-filled interior. In addition, the possibility to select between tetrahedral cages or helicates and to control the dimensions of the aggregate has been demonstrated with a three-component assembly using external hydrogen-bonding molecular inserts or by varying the radius of the metal ion (Hg2+ vs Fe2+). Self-sorting studies of individual Fe2+ complexes with ligands of different sizes revealed their inertness toward ligand scrambling.

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