The novel mixed-valence, exchange-coupled, class III dimer [L2Fe2(µ-OH)3]2+(L =N,N′,N″-trimethyl-1,4,7-triazacyclononane)

Author(s):  
S. Drüeke ◽  
P. Chaudhuri ◽  
K. Pohl ◽  
K. Wieghardt ◽  
X.-Q. Ding ◽  
...  
Keyword(s):  
2013 ◽  
Vol 126 (5) ◽  
pp. 1317-1320 ◽  
Author(s):  
German E. Pieslinger ◽  
Pablo Alborés ◽  
Leonardo D. Slep ◽  
Luis M. Baraldo

2002 ◽  
Vol 106 (7) ◽  
pp. 1131-1143 ◽  
Author(s):  
Timothy W. Marin ◽  
Bradley J. Homoelle ◽  
Kenneth G. Spears ◽  
Joseph T. Hupp ◽  
Larry O. Spreer

Crystals ◽  
2018 ◽  
Vol 8 (12) ◽  
pp. 447 ◽  
Author(s):  
Cándida Pastor-Ramírez ◽  
Rafael Ulloa ◽  
Daniel Ramírez-Rosales ◽  
Hugo Vázquez-Lima ◽  
Samuel Hernández-Anzaldo ◽  
...  

Using different spectroscopic techniques and computational calculations, we describe the structural and electromagnetic relationship that causes many interesting phenomena within a novel coordination compound with mixed valence manganese (II, III and IV) in its crystal and powder state. The novel compound [MnII MnIII MnIV(HL)2(H2L)2(H2O)4](NO3)2(H2O) 1 was obtained with the Schiff base (E)-2-((2-hydroxybenzylidene)amine)-2-(hydroximethyl)propane-1,3-diol, (H4L), and Mn(NO3)2.4H2O. The coordination reaction was promoted by the deprotonation of the ligand by the soft base triethylamine. The paper’s main contribution is the integration of the experimental and computational studies to explain the interesting magnetic behavior that the mixed valence manganese multimetallic core shows. The results presented herein, which are rarely found for Mn(II), (III) and (IV) complexes, will contribute to the understanding of the magnetic communication generated by the valence electrons and its repercussion in the local geometry and in the overall crystalline structure.


2014 ◽  
Vol 33 (19) ◽  
pp. 5618-5618 ◽  
Author(s):  
Alexandre Burgun ◽  
Benjamin G. Ellis ◽  
Thierry Roisnel ◽  
Brian W. Skelton ◽  
Michael I. Bruce ◽  
...  

2019 ◽  
Vol 150 (11) ◽  
pp. 1877-1892
Author(s):  
Gerald Giester ◽  
Dominik Talla ◽  
Manfred Wildner

Abstract The novel compounds M2+Zr(SO4)3 with M = Mg, Mn, Co, Ni, Zn, and Cd as well as (Fe3+,2+,Zr)2(SO4)3 were synthesized at mild hydrothermal conditions (Teflon-lined stainless steel vessels, 220 °C) from the mixtures of Zr2O2(CO3)(OH)2, the respective M2+(SO4)·nH2O hydrated salts, H2SO4 and a minor amount of water. Crystals up to several tenths of a mm in size were obtained within a few days and studied at 200 K by single-crystal X-ray diffraction techniques. All these compounds belong to the structure type of monoclinic Fe2(SO4)3; they are either isotypic in space group P21/n (No. 14), Z = 4, i.e. M2+Zr(SO4)3 with M = Mn, Co, Ni, Zn, and Cd as well as the mixed valence sulfate (Fe3+,2+,Zr)2(SO4)3 or in the case of MgZr(SO4)3, closely related but with a larger unit cell, in space group Pc and Z = 8. The framework of the monoclinic Fe2(SO4)3 structure is characterized by two types of isolated Fe3+O6 octahedra, corner-linked with three types of sulfate groups. In the isotypic M2+Zr(SO4)3 series, the Fe3+ atom on the Fe(1) position is substituted by Zr4+ while M2+ ions occupy the Fe(2) site in the ferric sulfate structure type. Mean cation-oxygen bond lengths (S[4]: 1.462–1.472 Å; Zr[6]: 2.053–2.060 Å as well as M2+–O distances) are generally rather short, but still within the range reported in literature. Graphic abstract


1991 ◽  
Vol 43 (2-3) ◽  
pp. 221
Author(s):  
Charlie Harding ◽  
Vickie McKee ◽  
Jane Nelson
Keyword(s):  

ChemInform ◽  
2010 ◽  
Vol 22 (26) ◽  
pp. no-no
Author(s):  
V. V. LAPKIN ◽  
M. D. SURAZHSKAYA ◽  
L. K. SHUBOCHKIN ◽  
T. B. LARINA ◽  
P. A. KOZ'MIN
Keyword(s):  

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