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83875-99-4

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83875-99-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 83875-99-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 8,3,8,7 and 5 respectively; the second part has 2 digits, 9 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 83875-99:
(7*8)+(6*3)+(5*8)+(4*7)+(3*5)+(2*9)+(1*9)=184
184 % 10 = 4
So 83875-99-4 is a valid CAS Registry Number.

83875-99-4Downstream Products

83875-99-4Relevant academic research and scientific papers

129I moessbauer spectroscopic study of a metallic MMX chain system

Kobayashi, Atsushi,Kitao, Shinji,Seto, Makoto,Ikeda, Ryuichi,Kitagawa, Hiroshi

, p. 8044 - 8049 (2009)

One-dimensional iodide-bridged mixed-valence binuclear platinum complexes (the so-called "MMX chains") and their Pt(III) dimer precursors were investigated with 129I Moessbauer spectroscopy. Spectra consisting of two sets of octuplets were observed at low temperatures for a neutral MMX chain complex, Pt2(dtp)4l (dtp = C 2H5CS2-), with various charge-ordering states at the Pt dimers, indicating that the charge-ordering state is in an alternate-charge-polarization phase (ACP: · · ·[Pt2+-Pt3+]-l0.4--[Pt 3+-Pt2+]- · · · -10.3-- · · ·), which is consistent with a previous low-temperature X-ray diffraction study. The estimated valence states of the bridging iodines of [(C2H5)2NH2]4[Pt 2(pop)4l] (pop = H2P2O 52-), with a charge-polarization phase (CP: · · · [Pf-Pt3+]-I0-4-· · · [Pt2+-Pt3+]-I0.4--· · ·), and [H3N(CH2)6NH 3]2[Pt2(pop)4l], with a charge-density-wave phase (CDW: · · · [Pt 2+-Pt2+] · · ·I0.3- -[Pt3+-Pt3+]-I30.3- · · ·), suggest that the covalent bond interaction is dominant in the CDW phase, whereas the Coulomb interaction is dominant in the CP phase. The estimated absolute quadrupole coupling constant (QCC) values for negatively charged MMX chain complexes with pop ligands are larger than those for neutral MMX chain complexes with CH3CS2- (dta) ligands, implying that the Madelung potential formed by the more-negative pop ligands and countercations effectively contributes to the physical properties of the pop system. The three Pt(III) dimer complexes Pt2(dta)4l 2, Pt2(dtp)4l2, and K 4[Pt2(pop)4l2] showed almost the same isomer shifts, indicating that the valence state of the iodide ion (1 0.5-) depends negligibly on the terminal ligand. The QCC value observed for K4[Pt2(pop)4l2] was larger than those for Pt2(dta)4l2 and Pt 2(dtp)4l2, originating from the anisotropic arrangement of the iodide anions, which form layers lying on the ab plane in the crystal.

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